Home LiteratureArticle Details
PMID: 22645559 Published · epublish English Journal Article

Defining the plant peroxisomal proteome: from Arabidopsis to rice.

Frontiers in plant science ·Vol. 2 ·2011-00-00 ·Pages 103

Kaur N, Hu J

Abstract

Peroxisomes are small subcellular organelles mediating a multitude of processes in plants. Proteomics studies over the last several years have yielded much needed information on the composition of plant peroxisomes. In this review, the status of peroxisome proteomics studies in Arabidopsis and other plant species and the cumulative advances made through these studies are summarized. A reference Arabidopsis peroxisome proteome is generated, and some unique aspects of Arabidopsis peroxisomes that were uncovered through proteomics studies and hint at unanticipated peroxisomal functions are also highlighted. Knowledge gained from Arabidopsis was utilized to compile a tentative list of peroxisome proteins for the model monocot plant, rice. Differences in the peroxisomal proteome between these two model plants were drawn, and novel facets in rice were expounded upon. Finally, we discuss about the current limitations of experimental proteomics in decoding the complete and dynamic makeup of peroxisomes, and complementary and integrated approaches that would be beneficial to defining the peroxisomal metabolic and regulatory roadmaps. The synteny of genomes in the grass family makes rice an ideal model to study peroxisomes in cereal crops, in which these organelles have received much less attention, with the ultimate goal to improve crop yield.

Keywords
Arabidopsis peroxisome proteomics rice
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Kaur Navneet
MSU-DOE Plant Research Laboratory, Michigan State University East Lansing, MI, USA.
Hu Jianping
References (242)
242 references, click to expand
  1. The peroxisome: still a mysterious organelle.
    Histochem Cell Biol. 2008 Apr;129(4):421-40 PMID: 18274771
  2. AthPEX10, a nuclear gene essential for peroxisome and storage organelle formation during Arabidopsis embryogenesis.
    Proc Natl Acad Sci U S A. 2003 Aug 5;100(16):9626-31 PMID: 12883010
  3. A dynamin-like protein (ADL2b), rather than FtsZ, is involved in Arabidopsis mitochondrial division.
    Proc Natl Acad Sci U S A. 2002 Apr 16;99(8):5727-31 PMID: 11960028
  4. Dual activity of certain HIT-proteins: A. thaliana Hint4 and C. elegans DcpS act on adenosine 5'-phosphosulfate as hydrolases (forming AMP) and as phosphorylases (forming ADP).
    FEBS Lett. 2010 Jan 4;584(1):93-8 PMID: 19896942
  5. Identification of novel plant peroxisomal targeting signals by a combination of machine learning methods and in vivo subcellular targeting analyses.
    Plant Cell. 2011 Apr;23(4):1556-72 PMID: 21487095
  6. The FAST technique: a simplified Agrobacterium-based transformation method for transient gene expression analysis in seedlings of Arabidopsis and other plant species.
    Plant Methods. 2009 May 20;5:6 PMID: 19457242
  7. Transcripts encoding an oleosin and a dormancy-related protein are present in both the aleurone layer and the embryo of developing barley (Hordeum vulgare L.) seeds.
    Plant J. 1994 Mar;5(3):385-96 PMID: 8180622
  8. Two small protein families, DYNAMIN-RELATED PROTEIN3 and FISSION1, are required for peroxisome fission in Arabidopsis.
    Plant J. 2009 Jan;57(1):146-59 PMID: 18785999
  9. NADPH is a specific inhibitor of protein import into glyoxysomes.
    Plant J. 1998 Jul;15(1):1-14 PMID: 9744090
  10. The multifunctional protein AtMFP2 is co-ordinately expressed with other genes of fatty acid beta-oxidation during seed germination in Arabidopsis thaliana (L.) Heynh.
    Biochem Soc Trans. 2000 Feb;28(2):95-9 PMID: 10816107
  11. The peroxin loss-of-function mutation abstinence by mutual consent disrupts male-female gametophyte recognition.
    Curr Biol. 2008 Jan 8;18(1):63-8 PMID: 18160292
  12. Reactive oxygen species, antioxidant systems and nitric oxide in peroxisomes.
    J Exp Bot. 2002 May;53(372):1255-72 PMID: 11997374
  13. Plant peroxisomes as a source of signalling molecules.
    Biochim Biophys Acta. 2006 Dec;1763(12):1478-95 PMID: 17030442
  14. Cytochemical localization of catalase in leaf microbodies (peroxisomes).
    J Cell Biol. 1969 Nov;43(2):343-53 PMID: 4981071
  15. Proteomic analysis of highly purified peroxisomes from etiolated soybean cotyledons.
    Plant Cell Physiol. 2008 Apr;49(4):526-39 PMID: 18281324
  16. The role of a putative peroxisomal-targeted epoxide hydrolase of Nicotiana benthamiana in interactions with Colletotrichum destructivum, C. orbiculare or Pseudomonas syringae pv. tabaci.
    Plant Sci. 2011 Aug;181(2):177-87 PMID: 21683883
  17. Superoxide dismutase in Arabidopsis: an eclectic enzyme family with disparate regulation and protein localization.
    Plant Physiol. 1998 Oct;118(2):637-50 PMID: 9765550
  18. Direct interaction and determination of binding domains among peroxisomal import factors in Arabidopsis thaliana.
    Plant Cell Physiol. 2002 Apr;43(4):355-66 PMID: 11978862
  19. The Arabidopsis PEX12 gene is required for peroxisome biogenesis and is essential for development.
    Plant Physiol. 2005 Sep;139(1):231-9 PMID: 16113209
  20. The bHLH transcription factor POPEYE regulates response to iron deficiency in Arabidopsis roots.
    Plant Cell. 2010 Jul;22(7):2219-36 PMID: 20675571
  21. An overview on the role of methylglyoxal and glyoxalases in plants.
    Drug Metabol Drug Interact. 2008;23(1-2):51-68 PMID: 18533364
  22. Arabidopsis PEX19 is a dimeric protein that binds the peroxin PEX10.
    Mol Membr Biol. 2006 Jul-Aug;23(4):325-36 PMID: 16923726
  23. Genome-wide analysis of effectors of peroxisome biogenesis.
    PLoS One. 2010 Aug 04;5(8):e11953 PMID: 20694151
  24. An Arabidopsis indole-3-butyric acid-response mutant defective in PEROXIN6, an apparent ATPase implicated in peroxisomal function.
    Proc Natl Acad Sci U S A. 2004 Feb 10;101(6):1786-91 PMID: 14745029
  25. In-depth proteome analysis of Arabidopsis leaf peroxisomes combined with in vivo subcellular targeting verification indicates novel metabolic and regulatory functions of peroxisomes.
    Plant Physiol. 2009 May;150(1):125-43 PMID: 19329564
  26. Jasmonates meet fatty acids: functional analysis of a new acyl-coenzyme A synthetase family from Arabidopsis thaliana.
    J Exp Bot. 2008;59(2):403-19 PMID: 18267944
  27. Arabidopsis peroxin 16 trafficks through the ER and an intermediate compartment to pre-existing peroxisomes via overlapping molecular targeting signals.
    J Exp Bot. 2007;58(7):1677-93 PMID: 17431024
  28. Organellar proteomics to create the cell map.
    Curr Opin Cell Biol. 2007 Aug;19(4):376-85 PMID: 17689063
  29. Proteome of plant peroxisomes: new perspectives on the role of these organelles in cell biology.
    Proteomics. 2009 May;9(9):2301-12 PMID: 19343723
  30. Alanine aminotransferase homologs catalyze the glutamate:glyoxylate aminotransferase reaction in peroxisomes of Arabidopsis.
    Plant Physiol. 2003 Jan;131(1):215-27 PMID: 12529529
  31. Long-chain acyl-CoA oxidases of Arabidopsis.
    Plant J. 1999 Oct;20(1):1-13 PMID: 10571860
  32. Novel proteins, putative membrane transporters, and an integrated metabolic network are revealed by quantitative proteomic analysis of Arabidopsis cell culture peroxisomes.
    Plant Physiol. 2008 Dec;148(4):1809-29 PMID: 18931141
  33. The biochemistry of oleate induction: transcriptional upregulation and peroxisome proliferation.
    Biochim Biophys Acta. 2006 Dec;1763(12):1392-402 PMID: 16949166
  34. Requirement for 3-ketoacyl-CoA thiolase-2 in peroxisome development, fatty acid beta-oxidation and breakdown of triacylglycerol in lipid bodies of Arabidopsis seedlings.
    Plant J. 2001 Oct;28(1):1-12 PMID: 11696182
  35. The coenzyme a biosynthetic enzyme phosphopantetheine adenylyltransferase plays a crucial role in plant growth, salt/osmotic stress resistance, and seed lipid storage.
    Plant Physiol. 2008 Sep;148(1):546-56 PMID: 18621975
  36. Adenosine monophosphoramidase activity of Hint and Hnt1 supports function of Kin28, Ccl1, and Tfb3.
    J Biol Chem. 2002 Mar 29;277(13):10852-60 PMID: 11805111
  37. Peroxisome biogenesis and function.
    Arabidopsis Book. 2009;7:e0123 PMID: 22303249
  38. Arabidopsis sterol carrier protein-2 is required for normal development of seeds and seedlings.
    J Exp Bot. 2008;59(12):3485-99 PMID: 18687588
  39. A role for peroxisomes in photomorphogenesis and development of Arabidopsis.
    Science. 2002 Jul 19;297(5580):405-9 PMID: 12130786
  40. Enzyme activities and subcellular localization of members of the Arabidopsis glutathione transferase superfamily.
    J Exp Bot. 2009;60(4):1207-18 PMID: 19174456
  41. Mutants that show increased sensitivity to hydrogen peroxide reveal an important role for the pentose phosphate pathway in protection of yeast against oxidative stress.
    Mol Gen Genet. 1996 Sep 25;252(4):456-64 PMID: 8879247
  42. Hydroxypyruvate reductase with a carboxy-terminal targeting signal to microbodies is expressed in Arabidopsis.
    Plant Cell Physiol. 1997 Apr;38(4):449-55 PMID: 9177031
  43. The evolution of gene duplications: classifying and distinguishing between models.
    Nat Rev Genet. 2010 Feb;11(2):97-108 PMID: 20051986
  44. Transport of fatty acids and metabolites across the peroxisomal membrane.
    Biochim Biophys Acta. 2000 Jun 26;1486(1):18-27 PMID: 10856710
  45. Proteome analysis of Arabidopsis leaf peroxisomes reveals novel targeting peptides, metabolic pathways, and defense mechanisms.
    Plant Cell. 2007 Oct;19(10):3170-93 PMID: 17951448
  46. Peroxisomal Delta(3),Delta(2)-enoyl CoA isomerases and evolution of cytosolic paralogues in embryophytes.
    Plant J. 2008 Dec;56(5):728-42 PMID: 18657232
  47. The power to reduce: pyridine nucleotides--small molecules with a multitude of functions.
    Biochem J. 2007 Mar 1;402(2):205-18 PMID: 17295611
  48. An Arabidopsis dynamin-related protein, DRP3A, controls both peroxisomal and mitochondrial division.
    Plant J. 2004 May;38(3):487-98 PMID: 15086806
  49. Proteomic analysis of rat liver peroxisome: presence of peroxisome-specific isozyme of Lon protease.
    J Biol Chem. 2004 Jan 2;279(1):421-8 PMID: 14561759
  50. Golden Rice: introducing the beta-carotene biosynthesis pathway into rice endosperm by genetic engineering to defeat vitamin A deficiency.
    J Nutr. 2002 Mar;132(3):506S-510S PMID: 11880581
  51. AtPex14p maintains peroxisomal functions by determining protein targeting to three kinds of plant peroxisomes.
    EMBO J. 2000 Nov 1;19(21):5701-10 PMID: 11060021
  52. An Arabidopsis pex10 null mutant is embryo lethal, implicating peroxisomes in an essential role during plant embryogenesis.
    Plant Physiol. 2003 Dec;133(4):1809-19 PMID: 14576288
  53. Characterization of Arabidopsis fluoroacetate-resistant mutants reveals the principal mechanism of acetate activation for entry into the glyoxylate cycle.
    J Biol Chem. 2005 Jan 28;280(4):2780-7 PMID: 15533942
  54. Senescence-specific regulation of catalases in Arabidopsis thaliana (L.) Heynh.
    Plant Cell Environ. 2006 Jun;29(6):1049-60 PMID: 17080932
  55. Characterization of Arabidopsis 6-phosphogluconolactonase T-DNA insertion mutants reveals an essential role for the oxidative section of the plastidic pentose phosphate pathway in plant growth and development.
    Plant Cell Physiol. 2009 Jul;50(7):1277-91 PMID: 19457984
  56. Peroxisome proliferator-activated receptors: nuclear control of metabolism.
    Endocr Rev. 1999 Oct;20(5):649-88 PMID: 10529898
  57. Arabidopsis peroxisomal citrate synthase is required for fatty acid respiration and seed germination.
    Plant Cell. 2005 Jul;17(7):2037-48 PMID: 15923350
  58. Abiotic environmental stress induced changes in the Arabidopsis thaliana chloroplast, mitochondria and peroxisome proteomes.
    J Proteomics. 2009 Apr 13;72(3):367-78 PMID: 19061979
  59. Evidence for the Presence of the Ascorbate-Glutathione Cycle in Mitochondria and Peroxisomes of Pea Leaves.
    Plant Physiol. 1997 May;114(1):275-284 PMID: 12223704
  60. Identification of a peroxisomal acyl-activating enzyme involved in the biosynthesis of jasmonic acid in Arabidopsis.
    J Biol Chem. 2006 Nov 3;281(44):33511-20 PMID: 16963437
  61. Badh2, encoding betaine aldehyde dehydrogenase, inhibits the biosynthesis of 2-acetyl-1-pyrroline, a major component in rice fragrance.
    Plant Cell. 2008 Jul;20(7):1850-61 PMID: 18599581
  62. Light induces peroxisome proliferation in Arabidopsis seedlings through the photoreceptor phytochrome A, the transcription factor HY5 HOMOLOG, and the peroxisomal protein PEROXIN11b.
    Plant Physiol. 2008 Mar;146(3):1117-27 PMID: 18203870
  63. Identification of two Arabidopsis genes encoding a peroxisomal oxidoreductase-like protein and an acyl-CoA synthetase-like protein that are required for responses to pro-auxins.
    Plant Mol Biol. 2009 Mar;69(5):503-15 PMID: 19043666
  64. Plant coenzyme A biosynthesis: characterization of two pantothenate kinases from Arabidopsis.
    Plant Mol Biol. 2006 Jul;61(4-5):629-42 PMID: 16897480
  65. Arabidopsis peroxisomes possess functionally redundant membrane and matrix isoforms of monodehydroascorbate reductase.
    Plant J. 2005 Sep;43(6):900-14 PMID: 16146528
  66. In vivo subcellular targeting analysis validates a novel peroxisome targeting signal type 2 and the peroxisomal localization of two proteins with putative functions in defense in Arabidopsis.
    Plant Signal Behav. 2010 Feb;5(2):151-3 PMID: 20009535
  67. The PEROXIN11 protein family controls peroxisome proliferation in Arabidopsis.
    Plant Cell. 2007 Jan;19(1):333-50 PMID: 17220199
  68. AtCPK1 calcium-dependent protein kinase mediates pathogen resistance in Arabidopsis.
    Plant J. 2010 Aug;63(3):526-40 PMID: 20497373
  69. MONODEHYROASCORBATE REDUCTASE4 is required for seed storage oil hydrolysis and postgerminative growth in Arabidopsis.
    Plant Cell. 2007 Apr;19(4):1376-87 PMID: 17449810
  70. Identification and functional characterization of Arabidopsis PEROXIN4 and the interacting protein PEROXIN22.
    Plant Cell. 2005 Dec;17(12):3422-35 PMID: 16272432
  71. The COMATOSE ATP-binding cassette transporter is required for full fertility in Arabidopsis.
    Plant Physiol. 2007 Jul;144(3):1467-80 PMID: 17468211
  72. Arabidopsis dynamin-like protein 2a (ADL2a), like ADL2b, is involved in plant mitochondrial division.
    Plant Cell Physiol. 2004 Feb;45(2):236-42 PMID: 14988495
  73. OsBADH1 is possibly involved in acetaldehyde oxidation in rice plant peroxisomes.
    FEBS Lett. 2009 Nov 19;583(22):3625-9 PMID: 19850038
  74. Subcellular localization of Nm23/NDPK A and B isoforms: a reflection of their biological function?
    Mol Cell Biochem. 2009 Sep;329(1-2):63-71 PMID: 19373546
  75. The Arabidopsis ALDP protein homologue COMATOSE is instrumental in peroxisomal acetate metabolism.
    Biochem J. 2007 Sep 15;406(3):399-406 PMID: 17581114
  76. Plants express a lipid transfer protein with high similarity to mammalian sterol carrier protein-2.
    J Biol Chem. 2004 Dec 17;279(51):53544-53 PMID: 15456765
  77. The Arabidopsis pex12 and pex13 mutants are defective in both PTS1- and PTS2-dependent protein transport to peroxisomes.
    Plant J. 2006 Aug;47(4):604-18 PMID: 16813573
  78. ACX3, a novel medium-chain acyl-coenzyme A oxidase from Arabidopsis.
    Plant Physiol. 2000 Jun;123(2):733-42 PMID: 10859203
  79. Jasmonic acid levels are reduced in COMATOSE ATP-binding cassette transporter mutants. Implications for transport of jasmonate precursors into peroxisomes.
    Plant Physiol. 2005 Mar;137(3):835-40 PMID: 15761209
  80. Proteomics characterization of mouse kidney peroxisomes by tandem mass spectrometry and protein correlation profiling.
    Mol Cell Proteomics. 2007 Dec;6(12):2045-57 PMID: 17768142
  81. Identification of photorespiratory glutamate:glyoxylate aminotransferase (GGAT) gene in Arabidopsis.
    Plant J. 2003 Mar;33(6):975-87 PMID: 12631323
  82. Sucrose rescues seedling establishment but not germination of Arabidopsis mutants disrupted in peroxisomal fatty acid catabolism.
    Plant J. 2005 Sep;43(6):861-72 PMID: 16146525
  83. Arabidopsis mutants in short- and medium-chain acyl-CoA oxidase activities accumulate acyl-CoAs and reveal that fatty acid beta-oxidation is essential for embryo development.
    J Biol Chem. 2003 Jun 13;278(24):21370-7 PMID: 12682048
  84. Novel glyoxysomal protein kinase, GPK1, identified by proteomic analysis of glyoxysomes in etiolated cotyledons of Arabidopsis thaliana.
    Plant Cell Physiol. 2003 Oct;44(10):1002-12 PMID: 14581625
  85. Molecular enzymology of the glyoxalase system.
    Drug Metabol Drug Interact. 2008;23(1-2):13-27 PMID: 18533362
  86. The DEG15 serine protease cleaves peroxisomal targeting signal 2-containing proteins in Arabidopsis.
    Plant Physiol. 2008 Dec;148(4):1847-56 PMID: 18952862
  87. Lipid utilization, gluconeogenesis, and seedling growth in Arabidopsis mutants lacking the glyoxylate cycle enzyme malate synthase.
    J Biol Chem. 2004 Oct 8;279(41):42916-23 PMID: 15272001
  88. The proteome map of spinach leaf peroxisomes indicates partial compartmentalization of phylloquinone (vitamin K1) biosynthesis in plant peroxisomes.
    J Exp Bot. 2010 Mar;61(5):1441-53 PMID: 20150517
  89. AraPerox. A database of putative Arabidopsis proteins from plant peroxisomes.
    Plant Physiol. 2004 Sep;136(1):2587-608 PMID: 15333753
  90. Sorting pathway and molecular targeting signals for the Arabidopsis peroxin 3.
    Biochem Biophys Res Commun. 2004 Feb 6;314(2):586-96 PMID: 14733948
  91. Evolution, structure and function of mitochondrial carriers: a review with new insights.
    Plant J. 2011 Apr;66(1):161-81 PMID: 21443630
  92. AtPEX2 and AtPEX10 are targeted to peroxisomes independently of known endoplasmic reticulum trafficking routes.
    Plant Physiol. 2005 Oct;139(2):690-700 PMID: 16169966
  93. Peroxisomal Acyl-CoA synthetase activity is essential for seedling development in Arabidopsis thaliana.
    Plant Cell. 2004 Feb;16(2):394-405 PMID: 14742880
  94. The Arabidopsis ascorbate peroxidase 3 is a peroxisomal membrane-bound antioxidant enzyme and is dispensable for Arabidopsis growth and development.
    J Exp Bot. 2006;57(12):3033-42 PMID: 16873450
  95. Arabidopsis dynamin-related proteins DRP3A and DRP3B are functionally redundant in mitochondrial fission, but have distinct roles in peroxisomal fission.
    Plant J. 2009 May;58(3):388-400 PMID: 19144001
  96. Entering a new era of research on plant peroxisomes.
    Curr Opin Plant Biol. 2003 Dec;6(6):577-82 PMID: 14611956
  97. AGB1 and PMR5 contribute to PEN2-mediated preinvasion resistance to Magnaporthe oryzae in Arabidopsis thaliana.
    Mol Plant Microbe Interact. 2009 Nov;22(11):1331-40 PMID: 19810803
  98. Peroxisomal beta-oxidation of polyunsaturated fatty acids in Saccharomyces cerevisiae: isocitrate dehydrogenase provides NADPH for reduction of double bonds at even positions.
    EMBO J. 1998 Feb 2;17(3):677-87 PMID: 9450993
  99. The Arabidopsis male-sterile mutant, opr3, lacks the 12-oxophytodienoic acid reductase required for jasmonate synthesis.
    Proc Natl Acad Sci U S A. 2000 Sep 12;97(19):10625-30 PMID: 10973494
  100. Identification and biochemical characterization of Arabidopsis thaliana sulfite oxidase. A new player in plant sulfur metabolism.
    J Biol Chem. 2001 Dec 14;276(50):46989-94 PMID: 11598126
  101. IBR3, a novel peroxisomal acyl-CoA dehydrogenase-like protein required for indole-3-butyric acid response.
    Plant Mol Biol. 2007 May;64(1-2):59-72 PMID: 17277896
  102. Identification and characterization of Arabidopsis indole-3-butyric acid response mutants defective in novel peroxisomal enzymes.
    Genetics. 2008 Sep;180(1):237-51 PMID: 18725356
  103. Characterization of the targeting signal of the Arabidopsis 22-kD integral peroxisomal membrane protein.
    Plant Physiol. 2003 Oct;133(2):813-28 PMID: 12972647
  104. Alternative targeting of Arabidopsis plastidic glucose-6-phosphate dehydrogenase G6PD1 involves cysteine-dependent interaction with G6PD4 in the cytosol.
    Plant J. 2011 Jun;66(5):745-58 PMID: 21309870
  105. 2,4-Dichlorophenoxybutyric acid-resistant mutants of Arabidopsis have defects in glyoxysomal fatty acid beta-oxidation.
    Plant Cell. 1998 Feb;10(2):183-95 PMID: 9490742
  106. Evolution of duplicate genes versus genetic robustness against null mutations.
    Trends Genet. 2003 Jul;19(7):354-6 PMID: 12850437
  107. The ALDH gene superfamily of Arabidopsis.
    Trends Plant Sci. 2004 Aug;9(8):371-7 PMID: 15358267
  108. Toward a definition of the complete proteome of plant peroxisomes: Where experimental proteomics must be complemented by bioinformatics.
    Proteomics. 2011 May;11(9):1764-79 PMID: 21472859
  109. BIGYIN, an orthologue of human and yeast FIS1 genes functions in the control of mitochondrial size and number in Arabidopsis thaliana.
    J Exp Bot. 2006;57(6):1275-80 PMID: 16510519
  110. Arabidopsis ABERRANT PEROXISOME MORPHOLOGY9 is a peroxin that recruits the PEX1-PEX6 complex to peroxisomes.
    Plant Cell. 2011 Apr;23(4):1573-87 PMID: 21487094
  111. Vitamins in plants: occurrence, biosynthesis and antioxidant function.
    Trends Plant Sci. 2010 Oct;15(10):582-92 PMID: 20729129
  112. Conserved alternative splicing of Arabidopsis transthyretin-like determines protein localization and S-allantoin synthesis in peroxisomes.
    Plant Cell. 2010 May;22(5):1564-74 PMID: 20511299
  113. Multiple facets of Arabidopsis seedling development require indole-3-butyric acid-derived auxin.
    Plant Cell. 2011 Mar;23(3):984-99 PMID: 21406624
  114. Arabidopsis peroxisomal malate dehydrogenase functions in beta-oxidation but not in the glyoxylate cycle.
    Plant J. 2007 May;50(3):381-90 PMID: 17376163
  115. The Pex16p homolog SSE1 and storage organelle formation in Arabidopsis seeds.
    Science. 1999 Apr 9;284(5412):328-30 PMID: 10195899
  116. Gene-specific involvement of beta-oxidation in wound-activated responses in Arabidopsis.
    Plant Physiol. 2004 May;135(1):85-94 PMID: 15141068
  117. Identification of an Arabidopsis unknown small membrane protein targeted to mitochondria, chloroplasts, and peroxisomes.
    Protoplasma. 2009 Jul;236(1-4):3-12 PMID: 19283443
  118. A putative peroxisomal polyamine oxidase, AtPAO4, is involved in polyamine catabolism in Arabidopsis thaliana.
    Plant Cell Physiol. 2008 Sep;49(9):1272-82 PMID: 18703589
  119. Peroxisomal plant 3-ketoacyl-CoA thiolase structure and activity are regulated by a sensitive redox switch.
    J Biol Chem. 2010 Jul 30;285(31):24078-88 PMID: 20463027
  120. Stability of barley aleurone transcripts: Dependence on protein synthesis, influence of the starchy endosperm and destabilization by GA3.
    Physiol Plant. 2001 Jul;112(3):403-413 PMID: 11473698
  121. The Arabidopsis acyl-CoA oxidase gene family.
    Biochem Soc Trans. 2000 Dec;28(6):755-7 PMID: 11171196
  122. The coi1-16 mutant harbors a second site mutation rendering PEN2 nonfunctional.
    Plant Cell. 2008 Apr;20(4):824-6 PMID: 18430804
  123. Chewing the fat: beta-oxidation in signalling and development.
    Trends Plant Sci. 2006 Mar;11(3):124-32 PMID: 16490379
  124. Non-coordinate expression of peroxisome biogenesis, beta-oxidation and glyoxylate cycle genes in mature Arabidopsis plants.
    Plant Cell Rep. 2005 Feb;23(9):647-53 PMID: 15449020
  125. Identification and functional characterization of a monofunctional peroxisomal enoyl-CoA hydratase 2 that participates in the degradation of even cis-unsaturated fatty acids in Arabidopsis thaliana.
    J Biol Chem. 2006 Nov 24;281(47):35894-903 PMID: 16982622
  126. Characterization and metabolic function of a peroxisomal sarcosine and pipecolate oxidase from Arabidopsis.
    J Biol Chem. 2004 Apr 23;279(17):16947-53 PMID: 14766747
  127. The arabidopsis DELAYED DEHISCENCE1 gene encodes an enzyme in the jasmonic acid synthesis pathway.
    Plant Cell. 2000 Jul;12(7):1041-61 PMID: 10899973
  128. Arabidopsis PEROXIN11c-e, FISSION1b, and DYNAMIN-RELATED PROTEIN3A cooperate in cell cycle-associated replication of peroxisomes.
    Plant Cell. 2008 Jun;20(6):1567-85 PMID: 18539750
  129. Arabidopsis 22-kilodalton peroxisomal membrane protein. Nucleotide sequence analysis and biochemical characterization.
    Plant Physiol. 1999 May;120(1):309-20 PMID: 10318708
  130. Improved prediction of peroxisomal PTS1 proteins from genome sequences based on experimental subcellular targeting analyses as exemplified for protein kinases from Arabidopsis.
    J Exp Bot. 2008;59(13):3767-79 PMID: 18836189
  131. Control of germination and lipid mobilization by COMATOSE, the Arabidopsis homologue of human ALDP.
    EMBO J. 2002 Jun 17;21(12):2912-22 PMID: 12065405
  132. pex5 Mutants that differentially disrupt PTS1 and PTS2 peroxisomal matrix protein import in Arabidopsis.
    Plant Physiol. 2010 Dec;154(4):1602-15 PMID: 20974890
  133. Differential contribution of two peroxisomal protein receptors to the maintenance of peroxisomal functions in Arabidopsis.
    J Biol Chem. 2005 Apr 15;280(15):14829-35 PMID: 15637057
  134. The peroxisomal ABC transporter family.
    Pflugers Arch. 2007 Feb;453(5):719-34 PMID: 17039367
  135. Bridging the gap between plant and mammalian polyamine catabolism: a novel peroxisomal polyamine oxidase responsible for a full back-conversion pathway in Arabidopsis.
    Plant Physiol. 2008 Aug;147(4):1845-57 PMID: 18583528
  136. Beta-catenin takes a HIT.
    Cell Cycle. 2008 May 15;7(10):1326-31 PMID: 18596417
  137. The aspartate aminotransferase gene family of Arabidopsis encodes isoenzymes localized to three distinct subcellular compartments.
    Plant J. 1995 Jan;7(1):61-75 PMID: 7894512
  138. A small molecule with differential effects on the PTS1 and PTS2 peroxisome matrix import pathways.
    Plant J. 2011 Mar;65(6):980-90 PMID: 21323771
  139. Biochemical and molecular characterization of ACH2, an acyl-CoA thioesterase from Arabidopsis thaliana.
    J Biol Chem. 2004 Feb 27;279(9):7487-94 PMID: 14660652
  140. A dehydrogenase-mediated recycling system of NADPH in plant peroxisomes.
    Biochem J. 1998 Mar 1;330 ( Pt 2):777-84 PMID: 9480890
  141. Plants need their vitamins too.
    Curr Opin Plant Biol. 2007 Jun;10(3):266-75 PMID: 17434786
  142. Requirement of the C3HC4 zinc RING finger of the Arabidopsis PEX10 for photorespiration and leaf peroxisome contact with chloroplasts.
    Proc Natl Acad Sci U S A. 2007 Jan 16;104(3):1069-74 PMID: 17215364
  143. Identification, molecular cloning and functional characterization of a novel NADH kinase from Arabidopsis thaliana (thale cress).
    Biochem J. 2005 Jan 1;385(Pt 1):217-23 PMID: 15347288
  144. Functional classification of Arabidopsis peroxisome biogenesis factors proposed from analyses of knockdown mutants.
    Plant Cell Physiol. 2007 Jun;48(6):763-74 PMID: 17478547
  145. Peroxisomal ATP import is essential for seedling development in Arabidopsis thaliana.
    Plant Cell. 2008 Dec;20(12):3241-57 PMID: 19073763
  146. Analysis and update of the human aldehyde dehydrogenase (ALDH) gene family.
    Hum Genomics. 2005 Jun;2(2):138-43 PMID: 16004729
  147. Glyoxalase system in yeasts: structure, function, and physiology.
    Semin Cell Dev Biol. 2011 May;22(3):278-84 PMID: 21310260
  148. IDP3 encodes a peroxisomal NADP-dependent isocitrate dehydrogenase required for the beta-oxidation of unsaturated fatty acids.
    J Biol Chem. 1998 Feb 6;273(6):3702-11 PMID: 9452501
  149. Postgerminative growth and lipid catabolism in oilseeds lacking the glyoxylate cycle.
    Proc Natl Acad Sci U S A. 2000 May 9;97(10):5669-74 PMID: 10805817
  150. Type II NAD(P)H dehydrogenases are targeted to mitochondria and chloroplasts or peroxisomes in Arabidopsis thaliana.
    FEBS Lett. 2008 Sep 3;582(20):3073-9 PMID: 18703057
  151. Comparative genetics in the grasses.
    Plant Mol Biol. 1997 Sep;35(1-2):3-15 PMID: 9291955
  152. Protein transport in organelles: Dual targeting of proteins to mitochondria and chloroplasts.
    FEBS J. 2009 Mar;276(5):1187-95 PMID: 19187233
  153. An Arabidopsis mutant disrupted in valine catabolism is also compromised in peroxisomal fatty acid beta-oxidation.
    FEBS Lett. 2004 Jul 30;571(1-3):147-53 PMID: 15280033
  154. Genetic characterization and functional analysis of the GID1 gibberellin receptors in Arabidopsis.
    Plant Cell. 2006 Dec;18(12):3399-414 PMID: 17194763
  155. Fatty acid beta-oxidation in germinating Arabidopsis seeds is supported by peroxisomal hydroxypyruvate reductase when malate dehydrogenase is absent.
    Plant Mol Biol. 2010 Jan;72(1-2):101-9 PMID: 19812894
  156. GIBBERELLIN INSENSITIVE DWARF1 encodes a soluble receptor for gibberellin.
    Nature. 2005 Sep 29;437(7059):693-8 PMID: 16193045
  157. SAGE of the developing wheat caryopsis.
    Plant Biotechnol J. 2007 Jan;5(1):69-83 PMID: 17207258
  158. Arabidopsis peroxin 16 coexists at steady state in peroxisomes and endoplasmic reticulum.
    Plant Physiol. 2005 Aug;138(4):1967-81 PMID: 16040658
  159. A glucosinolate metabolism pathway in living plant cells mediates broad-spectrum antifungal defense.
    Science. 2009 Jan 2;323(5910):101-6 PMID: 19095900
  160. Identification of peroxisomal membrane proteins of Saccharomyces cerevisiae by mass spectrometry.
    Electrophoresis. 2001 Aug;22(14):2955-68 PMID: 11565790
  161. The peroxisome deficient Arabidopsis mutant sse1 exhibits impaired fatty acid synthesis.
    Plant Physiol. 2004 Jun;135(2):814-27 PMID: 15173561
  162. Mutations in Arabidopsis acyl-CoA oxidase genes reveal distinct and overlapping roles in beta-oxidation.
    Plant J. 2005 Mar;41(6):859-74 PMID: 15743450
  163. Peroxisomes are involved in biotin biosynthesis in Aspergillus and Arabidopsis.
    J Biol Chem. 2011 Sep 2;286(35):30455-30461 PMID: 21730067
  164. The Arabidopsis peroxisomal targeting signal type 2 receptor PEX7 is necessary for peroxisome function and dependent on PEX5.
    Mol Biol Cell. 2005 Feb;16(2):573-83 PMID: 15548601
  165. Inactivation of an aminoaldehyde dehydrogenase is responsible for fragrance in rice.
    Plant Mol Biol. 2008 Nov;68(4-5):439-49 PMID: 18704694
  166. The Arabidopsis tail-anchored protein PEROXISOMAL AND MITOCHONDRIAL DIVISION FACTOR1 is involved in the morphogenesis and proliferation of peroxisomes and mitochondria.
    Plant Cell. 2011 Dec;23(12):4446-61 PMID: 22147290
  167. A novel acyl-CoA oxidase that can oxidize short-chain acyl-CoA in plant peroxisomes.
    J Biol Chem. 1999 Apr 30;274(18):12715-21 PMID: 10212254
  168. FISSION1A and FISSION1B proteins mediate the fission of peroxisomes and mitochondria in Arabidopsis.
    Mol Plant. 2008 Nov;1(6):1036-47 PMID: 19825601
  169. Identification and characterization of a stress-inducible and a constitutive small heat-shock protein targeted to the matrix of plant peroxisomes.
    Plant Physiol. 2006 May;141(1):47-60 PMID: 16531488
  170. The cytoskeleton and the peroxisomal-targeted snowy cotyledon3 protein are required for chloroplast development in Arabidopsis.
    Plant Cell. 2010 Oct;22(10):3423-38 PMID: 20978221
  171. Nine 3-ketoacyl-CoA thiolases (KATs) and acetoacetyl-CoA thiolases (ACATs) encoded by five genes in Arabidopsis thaliana are targeted either to peroxisomes or cytosol but not to mitochondria.
    Plant Mol Biol. 2007 Jan;63(1):97-108 PMID: 17120136
  172. Peroxisomal ascorbate peroxidase resides within a subdomain of rough endoplasmic reticulum in wild-type Arabidopsis cells.
    Plant Physiol. 2003 Jun;132(2):870-82 PMID: 12805617
  173. Dependence of peroxisomal beta-oxidation on cytosolic sources of NADPH.
    J Biol Chem. 1999 Feb 5;274(6):3402-6 PMID: 9920883
  174. Proteomics of the peroxisome.
    Biochim Biophys Acta. 2006 Dec;1763(12):1541-51 PMID: 17050007
  175. Proteomic identification and characterization of a novel peroxisomal adenine nucleotide transporter supplying ATP for fatty acid beta-oxidation in soybean and Arabidopsis.
    Plant Cell. 2008 Dec;20(12):3227-40 PMID: 19073762
  176. Peroxisome-associated matrix protein degradation in Arabidopsis.
    Proc Natl Acad Sci U S A. 2009 Mar 17;106(11):4561-6 PMID: 19246395
  177. Ped3p is a peroxisomal ATP-binding cassette transporter that might supply substrates for fatty acid beta-oxidation.
    Plant Cell Physiol. 2002 Jan;43(1):1-11 PMID: 11828016
  178. Aldh3a1 protects human corneal epithelial cells from ultraviolet- and 4-hydroxy-2-nonenal-induced oxidative damage.
    Free Radic Biol Med. 2003 May 1;34(9):1178-89 PMID: 12706498
  179. Up-regulation of the leaf mitochondrial and peroxisomal antioxidative systems in response to salt-induced oxidative stress in the wild salt-tolerant tomato species Lycopersicon pennellii.
    Plant Cell Environ. 2003 Jun;26(6):845-856 PMID: 12803612
  180. Functional diversification of acyl-coenzyme A oxidases in jasmonic acid biosynthesis and action.
    Plant Physiol. 2007 Feb;143(2):812-24 PMID: 17172287
  181. Constitutively and highly expressed Oryza sativa polyamine oxidases localize in peroxisomes and catalyze polyamine back conversion.
    Amino Acids. 2012 Feb;42(2-3):867-76 PMID: 21796433
  182. A defect in glyoxysomal fatty acid beta-oxidation reduces jasmonic acid accumulation in Arabidopsis.
    Plant Physiol Biochem. 2005 Jun;43(6):603-9 PMID: 15979881
  183. The ABC transporter PXA1 and peroxisomal beta-oxidation are vital for metabolism in mature leaves of Arabidopsis during extended darkness.
    Plant Cell. 2009 Sep;21(9):2733-49 PMID: 19794119
  184. Protein import machineries of peroxisomes.
    Biochim Biophys Acta. 2011 Mar;1808(3):892-900 PMID: 20659419
  185. Peroxisomal ABC transporters.
    FEBS Lett. 2006 Feb 13;580(4):1139-55 PMID: 16413537
  186. The Arabidopsis 3-ketoacyl-CoA thiolase-2 (kat2-1) mutant exhibits increased flowering but reduced reproductive success.
    J Exp Bot. 2007;58(11):2959-68 PMID: 17728299
  187. Golden rice and beyond.
    Plant Physiol. 2001 Mar;125(3):1157-61 PMID: 11244094
  188. 12-Oxophytodienoate reductase 3 (OPR3) is the isoenzyme involved in jasmonate biosynthesis.
    Planta. 2000 May;210(6):979-84 PMID: 10872231
  189. Peroxisomal malate dehydrogenase is not essential for photorespiration in Arabidopsis but its absence causes an increase in the stoichiometry of photorespiratory CO2 release.
    Plant Physiol. 2008 Oct;148(2):786-95 PMID: 18685043
  190. Comprehensive functional analysis of the catalase gene family in Arabidopsis thaliana.
    J Integr Plant Biol. 2008 Oct;50(10):1318-26 PMID: 19017119
  191. Proteomic analysis of leaf peroxisomal proteins in greening cotyledons of Arabidopsis thaliana.
    Plant Cell Physiol. 2002 Jul;43(7):689-96 PMID: 12154131
  192. A new type of peroxisomal acyl-coenzyme A synthetase from Arabidopsis thaliana has the catalytic capacity to activate biosynthetic precursors of jasmonic acid.
    J Biol Chem. 2005 Apr 8;280(14):13962-72 PMID: 15677481
  193. Developmental analysis of a putative ATP/ADP carrier protein localized on glyoxysomal membranes during the peroxisome transition in pumpkin cotyledons.
    Plant Cell Physiol. 2001 Aug;42(8):835-41 PMID: 11522909
  194. Pre- and postinvasion defenses both contribute to nonhost resistance in Arabidopsis.
    Science. 2005 Nov 18;310(5751):1180-3 PMID: 16293760
  195. Arabidopsis contains a large superfamily of acyl-activating enzymes. Phylogenetic and biochemical analysis reveals a new class of acyl-coenzyme a synthetases.
    Plant Physiol. 2003 Jun;132(2):1065-76 PMID: 12805634
  196. The Arabidopsis pxa1 mutant is defective in an ATP-binding cassette transporter-like protein required for peroxisomal fatty acid beta-oxidation.
    Plant Physiol. 2001 Nov;127(3):1266-78 PMID: 11706205
  197. Comparative proteomics of glycosomes from bloodstream form and procyclic culture form Trypanosoma brucei brucei.
    Proteomics. 2006 Jun;6(11):3275-93 PMID: 16622829
  198. Hint, Fhit, and GalT: function, structure, evolution, and mechanism of three branches of the histidine triad superfamily of nucleotide hydrolases and transferases.
    Biochemistry. 2002 Jul 23;41(29):9003-14 PMID: 12119013
  199. Nucleotide- and nucleoside-converting ectoenzymes: Important modulators of purinergic signalling cascade.
    Biochim Biophys Acta. 2008 May;1783(5):673-94 PMID: 18302942
  200. Two families of acyl-CoA thioesterases in Arabidopsis.
    Biochem Soc Trans. 2000 Dec;28(6):946-7 PMID: 11171266
  201. The oxidative pentose phosphate pathway: structure and organisation.
    Curr Opin Plant Biol. 2003 Jun;6(3):236-46 PMID: 12753973
  202. Catalase is encoded by a multigene family in Arabidopsis thaliana (L.) Heynh.
    Plant Physiol. 1996 Sep;112(1):327-36 PMID: 8819328
  203. An Arabidopsis mutant impaired in coenzyme A biosynthesis is sugar dependent for seedling establishment.
    Plant Physiol. 2006 Mar;140(3):830-43 PMID: 16415216
  204. The multifunctional protein in peroxisomal beta-oxidation: structure and substrate specificity of the Arabidopsis thaliana protein MFP2.
    J Biol Chem. 2010 Jul 30;285(31):24066-77 PMID: 20463021
  205. Subcellular and tissue localization of NAD kinases from Arabidopsis: compartmentalization of de novo NADP biosynthesis.
    Planta. 2010 Jan;231(2):305-17 PMID: 19921251
  206. A defect in beta-oxidation causes abnormal inflorescence development in Arabidopsis.
    Plant Cell. 1999 Oct;11(10):1911-24 PMID: 10521521
  207. Nicotinamide cofactors (NAD and NADP) in glyoxysomes, mitochondria, and plastids isolated from castor bean endosperm.
    Arch Biochem Biophys. 1982 Apr 15;215(1):274-9 PMID: 7092229
  208. Evolution of organelle-associated protein profiling.
    J Proteomics. 2009 Feb 15;72(1):4-11 PMID: 19110081
  209. Glucosinolate metabolites required for an Arabidopsis innate immune response.
    Science. 2009 Jan 2;323(5910):95-101 PMID: 19095898
  210. Coenzyme A: back in action.
    Prog Lipid Res. 2005 Mar-May;44(2-3):125-53 PMID: 15893380
  211. Molecular components required for the targeting of PEX7 to peroxisomes in Arabidopsis thaliana.
    Plant J. 2009 Nov;60(3):488-98 PMID: 19594707
  212. Jasmonate biosynthesis in Arabidopsis thaliana requires peroxisomal beta-oxidation enzymes--additional proof by properties of pex6 and aim1.
    Phytochemistry. 2007 Jun;68(12):1642-50 PMID: 17544464
  213. Interdependence of the peroxisome-targeting receptors in Arabidopsis thaliana: PEX7 facilitates PEX5 accumulation and import of PTS1 cargo into peroxisomes.
    Mol Biol Cell. 2010 Apr 1;21(7):1263-71 PMID: 20130089
  214. Arabidopsis LON2 is necessary for peroxisomal function and sustained matrix protein import.
    Plant Physiol. 2009 Nov;151(3):1354-65 PMID: 19748917
  215. Proteomics of organelles and large cellular structures.
    Nat Rev Mol Cell Biol. 2005 Sep;6(9):702-14 PMID: 16231421
  216. The functional anatomy of rice leaves: implications for refixation of photorespiratory CO2 and efforts to engineer C4 photosynthesis into rice.
    Plant Cell Physiol. 2009 Apr;50(4):756-72 PMID: 19246459
  217. A peroxisomal carrier delivers NAD⁺ and contributes to optimal fatty acid degradation during storage oil mobilization.
    Plant J. 2012 Jan;69(1):1-13 PMID: 21895810
  218. Sulphite oxidase as key enzyme for protecting plants against sulphur dioxide.
    Plant Cell Environ. 2007 Apr;30(4):447-55 PMID: 17324231
  219. Conservation of targeting but divergence in function and quality control of peroxisomal ABC transporters: an analysis using cross-kingdom expression.
    Biochem J. 2011 Jun 15;436(3):547-57 PMID: 21476988
  220. Peroxisomes from pepper fruits (Capsicum annuum L.): purification, characterisation and antioxidant activity.
    J Plant Physiol. 2003 Dec;160(12):1507-16 PMID: 14717445
  221. Arabidopsis glutathione reductase 1 is dually targeted to peroxisomes and the cytosol.
    Plant Signal Behav. 2010 Feb;5(2):171-5 PMID: 20038819
  222. Bioengineered 'golden' indica rice cultivars with beta-carotene metabolism in the endosperm with hygromycin and mannose selection systems.
    Plant Biotechnol J. 2003 Mar;1(2):81-90 PMID: 17147745
  223. Ancient polyploidization predating divergence of the cereals, and its consequences for comparative genomics.
    Proc Natl Acad Sci U S A. 2004 Jun 29;101(26):9903-8 PMID: 15161969
  224. Molecular identification and characterization of the Arabidopsis delta(3,5),delta(2,4)-dienoyl-coenzyme A isomerase, a peroxisomal enzyme participating in the beta-oxidation cycle of unsaturated fatty acids.
    Plant Physiol. 2005 Aug;138(4):1947-56 PMID: 16040662
  225. Five Arabidopsis peroxin 11 homologs individually promote peroxisome elongation, duplication or aggregation.
    J Cell Sci. 2006 May 1;119(Pt 9):1961-72 PMID: 16636080
  226. Dual specificities of the glyoxysomal/peroxisomal processing protease Deg15 in higher plants.
    Proc Natl Acad Sci U S A. 2007 Jul 3;104(27):11501-6 PMID: 17592111
  227. Integrated phosphoproteomics analysis of a signaling network governing nutrient response and peroxisome induction.
    Mol Cell Proteomics. 2010 Sep;9(9):2076-88 PMID: 20395639
  228. The Arabidopsis thaliana multifunctional protein gene (MFP2) of peroxisomal beta-oxidation is essential for seedling establishment.
    Plant J. 2006 Mar;45(6):930-41 PMID: 16507084
  229. Conserved and novel functions for Arabidopsis thaliana MIA40 in assembly of proteins in mitochondria and peroxisomes.
    J Biol Chem. 2010 Nov 12;285(46):36138-48 PMID: 20829360
  230. Oxidation of NADH in Glyoxysomes by a Malate-Aspartate Shuttle.
    Plant Physiol. 1980 Oct;66(4):555-60 PMID: 16661476
  231. E. coli histidine triad nucleotide binding protein 1 (ecHinT) is a catalytic regulator of D-alanine dehydrogenase (DadA) activity in vivo.
    PLoS One. 2011;6(7):e20897 PMID: 21754980
  232. Targeting of glyoxysomal proteins to peroxisomes in leaves and roots of a higher plant.
    Plant Cell. 1993 Aug;5(8):941-52 PMID: 8400872
  233. Hit proteins, mitochondria and cancer.
    Biochim Biophys Acta. 2011 Jun;1807(6):626-32 PMID: 21316334
  234. Different functions of the C3HC4 zinc RING finger peroxins PEX10, PEX2, and PEX12 in peroxisome formation and matrix protein import.
    Proc Natl Acad Sci U S A. 2010 Aug 17;107(33):14915-20 PMID: 20679226
  235. Genetic analysis of indole-3-butyric acid responses in Arabidopsis thaliana reveals four mutant classes.
    Genetics. 2000 Nov;156(3):1323-37 PMID: 11063705
  236. The Arabidopsis peroxisomal ABC transporter, comatose, complements the Saccharomyces cerevisiae pxa1 pxa2Delta mutant for metabolism of long-chain fatty acids and exhibits fatty acyl-CoA-stimulated ATPase activity.
    J Biol Chem. 2010 Sep 24;285(39):29892-902 PMID: 20659892
  237. An integrated view of protein evolution.
    Nat Rev Genet. 2006 May;7(5):337-48 PMID: 16619049
  238. The Arabidopsis chloroplast division protein DYNAMIN-RELATED PROTEIN5B also mediates peroxisome division.
    Plant Cell. 2010 Feb;22(2):431-42 PMID: 20179140
  239. chy1, an Arabidopsis mutant with impaired beta-oxidation, is defective in a peroxisomal beta-hydroxyisobutyryl-CoA hydrolase.
    J Biol Chem. 2001 Aug 17;276(33):31037-46 PMID: 11404361
  240. Plant peroxisomes respire in the light: some gaps of the photorespiratory C2 cycle have become filled--others remain.
    Biochim Biophys Acta. 2006 Dec;1763(12):1496-510 PMID: 17046077
  241. Functional differentiation of peroxisomes revealed by expression profiles of peroxisomal genes in Arabidopsis thaliana.
    Plant Cell Physiol. 2003 Dec;44(12):1275-89 PMID: 14701923
  242. Proteomics of Saccharomyces cerevisiae Organelles.
    Mol Cell Proteomics. 2010 Mar;9(3):431-45 PMID: 19955081
Article Info
Journal
Frontiers in plant science
Abbr.
Front Plant Sci
ISSN
1664-462X
Published
2011-00-00
Epub
2011-00-27
Pages
103
Language
English
Region
Switzerland
NLM ID
101568200
PMCID
PMC3355810
Analysis Services
Analysis Services

Contact

No. 2 Wenbo Road, Zhangqiu District, Jinan, Shandong

Qilu Normal University · Genelibs Bioinformatics Lab

750 Shunhua Rd, Jinan

2F, Bldg F, University Science Park

Tel: 0531-88819269

WeChat Official Account

Follow our WeChat subscription account for real-time updates and the latest in medical and biological research.


Business Email

E-mail: [email protected]