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PMID: 20025249 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Review

Jasmonates: structural requirements for lipid-derived signals active in plant stress responses and development.

ACS chemical biology ·Vol. 5 ·No. 1 ·2010-01-15 ·Pages 63-77

Wasternack C, Kombrink E

Abstract

Jasmonates are lipid-derived signals that mediate plant stress responses and development processes. Enzymes participating in biosynthesis of jasmonic acid (JA) (1, 2) and components of JA signaling have been extensively characterized by biochemical and molecular-genetic tools. Mutants of Arabidopsis and tomato have helped to define the pathway for synthesis of jasmonoyl-isoleucine (JA-Ile), the active form of JA, and to identify the F-box protein COI1 as central regulatory unit. However, details of the molecular mechanism of JA signaling have only recently been unraveled by the discovery of JAZ proteins that function in transcriptional repression. The emerging picture of JA perception and signaling cascade implies the SCF(COI1) complex operating as E3 ubiquitin ligase that upon binding of JA-Ile targets JAZ repressors for degradation by the 26S-proteasome pathway, thereby allowing the transcription factor MYC2 to activate gene expression. The fact that only one particular stereoisomer, (+)-7-iso-JA-l-Ile (4), shows high biological activity suggests that epimerization between active and inactive diastereomers could be a mechanism for turning JA signaling on or off. The recent demonstration that COI1 directly binds (+)-7-iso-JA-l-Ile (4) and thus functions as JA receptor revealed that formation of the ternary complex COI1-JA-Ile-JAZ is an ordered process. The pronounced differences in biological activity of JA stereoisomers also imply strict stereospecific control of product formation along the JA biosynthetic pathway. The pathway of JA biosynthesis has been unraveled, and most of the participating enzymes are well-characterized. For key enzymes of JA biosynthesis the crystal structures have been established, allowing insight into the mechanisms of catalysis and modes of substrate binding that lead to formation of stereospecific products.

MeSH Terms
Cyclopentanes/pharmacology Inflammation Mediators/pharmacology Oxylipins/pharmacology Plant Development Plant Growth Regulators/pharmacology Signal Transduction
Chemicals
Cyclopentanes Inflammation Mediators Oxylipins Plant Growth Regulators jasmonic acid
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Wasternack Claus
Department of Natural Product Biotechnology, Leibniz Institute of Plant Biochemistry, Weinberg 3, Halle (Saale), Germany.
Kombrink Erich
Article Info
Journal
ACS chemical biology
Abbr.
ACS Chem Biol
ISSN
1554-8937
Published
2010-01-15
Pages
63-77
Language
English
Region
United States
NLM ID
101282906
Subset
IM
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