Home LiteratureArticle Details
PMID: 8378303 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, P.H.S.

Mechanism of protein kinase C activation during the induction and maintenance of long-term potentiation probed using a selective peptide substrate.

Klann E, Chen SJ, Sweatt JD

Abstract

Previous reports using various protein kinase inhibitors have suggested that protein kinase activity is necessary for both the induction and maintenance of hippocampal long-term potentiation (LTP), a cellular phenomenon likely to contribute to mammalian memory formation. We designed and characterized a selective peptide substrate for protein kinase C (PKC), corresponding to amino acids 28 to 43 of the neuronal protein neurogranin, and used the substrate to obtain direct biochemical evidence for activation of PKC in both the induction and maintenance phases of LTP. As the effect cannot be accounted for by either of two well-known mechanisms for persistent PKC activation, membrane insertion, or proteolysis, the persistent activation of PKC in the maintenance phase of LTP appears to occur via another mechanism. The maintenance phase of LTP is associated with decreased immunoreactivity of PKC, an effect that can be reversed with phosphatase treatment. Thus, PKC appears to be both phosphorylated and persistently activated in the maintenance phase of LTP.

MeSH Terms
Animals Blotting, Western Calmodulin-Binding Proteins Electric Stimulation Enzyme Activation Evoked Potentials/physiology Hippocampus/enzymology,physiology In Vitro Techniques Kinetics Nerve Tissue Proteins/metabolism Neurogranin Phosphoproteins/isolation & purification,metabolism Protein Kinase C/metabolism Rats Substrate Specificity Synapses/physiology
Chemicals
Calmodulin-Binding Proteins Nerve Tissue Proteins Nrgn protein, rat Phosphoproteins Neurogranin Protein Kinase C
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Klann E
Division of Neuroscience, Baylor College of Medicine, Houston, TX 77030-3498.
Chen S J
Sweatt J D
References (39)
39 references, click to expand
  1. The long and the short of long-term memory--a molecular framework.
    Nature. 1986 Jul 31-Aug 6;322(6078):419-22 PMID: 2874497
  2. Studies on a cyclic nucleotide-independent protein kinase and its proenzyme in mammalian tissues. II. Proenzyme and its activation by calcium-dependent protease from rat brain.
    J Biol Chem. 1977 Nov 10;252(21):7610-6 PMID: 199594
  3. Immunochemical characterization of rat brain protein kinase C.
    J Biol Chem. 1986 Nov 5;261(31):14781-7 PMID: 3771551
  4. Role of protein kinase C in phosphorylation of vinculin in adriamycin-resistant HL-60 leukemia cells.
    Cancer Res. 1988 Jun 15;48(12):3324-9 PMID: 3130982
  5. Constitutive activity of membrane-inserted protein kinase C.
    Biochem Biophys Res Commun. 1988 Apr 15;152(1):336-43 PMID: 3128979
  6. Domain structure and phosphorylation of protein kinase C.
    J Biol Chem. 1987 Feb 15;262(5):2291-7 PMID: 3818597
  7. Electrophoretic transfer of proteins from polyacrylamide gels to nitrocellulose sheets: procedure and some applications.
    Proc Natl Acad Sci U S A. 1979 Sep;76(9):4350-4 PMID: 388439
  8. Excitatory amino acids in synaptic transmission in the Schaffer collateral-commissural pathway of the rat hippocampus.
    J Physiol. 1983 Jan;334:33-46 PMID: 6306230
  9. Selective increase in phosphorylation of a 47-kDa protein (F1) directly related to long-term potentiation.
    Behav Neural Biol. 1985 Jan;43(1):3-11 PMID: 3158299
  10. Interaction of protein kinase C with membranes is regulated by Ca2+, phorbol esters, and ATP.
    J Biol Chem. 1985 Dec 15;260(29):15718-22 PMID: 4066694
  11. Translocation of protein kinase C activity may mediate hippocampal long-term potentiation.
    Science. 1986 Feb 7;231(4738):587-9 PMID: 3003904
  12. Potentiation of synaptic transmission in the hippocampus by phorbol esters.
    Nature. 1986 May 8-14;321(6066):175-7 PMID: 3010137
  13. Dioctanoylglycerol and phorbol diesters enhance phosphorylation of phosphoprotein B-50 in native synaptic plasma membranes.
    Biochem Biophys Res Commun. 1986 May 14;136(3):1007-12 PMID: 2941012
  14. Inhibitors of calmodulin and protein kinase C block different phases of hippocampal long-term potentiation.
    Brain Res. 1988 Oct 4;461(2):388-92 PMID: 3179724
  15. Persistent protein kinase activity underlying long-term potentiation.
    Nature. 1988 Oct 27;335(6193):820-4 PMID: 2847049
  16. Protein kinase C substrates from bovine brain. Purification and characterization of neuromodulin, a neuron-specific calmodulin-binding protein.
    J Biol Chem. 1989 Jan 25;264(3):1824-8 PMID: 2521487
  17. Biosynthesis and posttranslational modifications of protein kinase C in human breast cancer cells.
    J Biol Chem. 1989 Aug 15;264(23):13902-9 PMID: 2474538
  18. An essential role for postsynaptic calmodulin and protein kinase activity in long-term potentiation.
    Nature. 1989 Aug 17;340(6234):554-7 PMID: 2549423
  19. Inhibition of postsynaptic PKC or CaMKII blocks induction but not expression of LTP.
    Science. 1989 Aug 25;245(4920):862-6 PMID: 2549638
  20. A point mutation at the putative ATP-binding site of protein kinase C alpha abolishes the kinase activity and renders it down-regulation-insensitive. A molecular link between autophosphorylation and down-regulation.
    J Biol Chem. 1990 Apr 15;265(11):6296-300 PMID: 2318854
  21. Inhibition of protein kinase C blocks two components of LTP persistence, leaving initial potentiation intact.
    J Neurosci. 1990 Oct;10(10):3353-60 PMID: 2213144
  22. Subtractive cDNA cloning of RC3, a rodent cortex-enriched mRNA encoding a novel 78 residue protein.
    J Neurosci Res. 1990 Aug;26(4):397-408 PMID: 2231781
  23. Purification and characterization of a brain-specific protein kinase C substrate, neurogranin (p17). Identification of a consensus amino acid sequence between neurogranin and neuromodulin (GAP43) that corresponds to the protein kinase C phosphorylation site and the calmodulin-binding domain.
    J Biol Chem. 1991 Jan 5;266(1):229-37 PMID: 1824695
  24. Activation of multifunctional Ca2+/calmodulin-dependent kinase in intact hippocampal slices.
    Neuron. 1991 Jun;6(6):907-14 PMID: 1647175
  25. Sustained potentiation of NMDA receptor-mediated glutamate responses through activation of protein kinase C by a mu opioid.
    Neuron. 1991 Aug;7(2):319-26 PMID: 1678615
  26. Rapid activation of hippocampal casein kinase II during long-term potentiation.
    Proc Natl Acad Sci U S A. 1991 Nov 15;88(22):10232-6 PMID: 1946443
  27. Persistent protein kinase activation in the maintenance phase of long-term potentiation.
    J Biol Chem. 1991 Dec 25;266(36):24253-6 PMID: 1684790
  28. Increased phosphorylation of a 17-kDa protein kinase C substrate (P17) in long-term potentiation.
    J Neurochem. 1992 Apr;58(4):1576-9 PMID: 1548487
  29. Postsynaptic protein kinase C essential to induction and maintenance of long-term potentiation in the hippocampal CA1 region.
    Proc Natl Acad Sci U S A. 1992 Apr 1;89(7):2576-80 PMID: 1557361
  30. Protein kinase C reduces Mg2+ block of NMDA-receptor channels as a mechanism of modulation.
    Nature. 1992 Apr 9;356(6369):521-3 PMID: 1373227
  31. Phosphorylation of the presynaptic protein B-50 (GAP-43) is increased during electrically induced long-term potentiation.
    Neuron. 1992 May;8(5):843-8 PMID: 1534012
  32. Deficient hippocampal long-term potentiation in alpha-calcium-calmodulin kinase II mutant mice.
    Science. 1992 Jul 10;257(5067):201-6 PMID: 1378648
  33. Oxidation-induced persistent activation of protein kinase C in hippocampal homogenates.
    Biochem Biophys Res Commun. 1992 Sep 30;187(3):1439-45 PMID: 1417820
  34. Impaired long-term potentiation, spatial learning, and hippocampal development in fyn mutant mice.
    Science. 1992 Dec 18;258(5090):1903-10 PMID: 1361685
  35. Studies with synthetic peptide substrates derived from the neuronal protein neurogranin reveal structural determinants of potency and selectivity for protein kinase C.
    Biochemistry. 1993 Feb 2;32(4):1032-9 PMID: 8424932
  36. Protein kinase C injection into hippocampal pyramidal cells elicits features of long term potentiation.
    Nature. 1987 Jul 30-Aug 5;328(6129):426-9 PMID: 3614346
  37. Protein kinase C inhibitors eliminate hippocampal long-term potentiation.
    Brain Res. 1987 Dec 8;436(1):177-83 PMID: 2825923
  38. Autophosphorylation of rat brain Ca2+-activated and phospholipid-dependent protein kinase.
    J Biol Chem. 1986 Sep 15;261(26):12134-40 PMID: 3462187
  39. Synthetic hexapeptide substrates and inhibitors of 3':5'-cyclic AMP-dependent protein kinase.
    Proc Natl Acad Sci U S A. 1976 Apr;73(4):1038-42 PMID: 177970
Article Info
Journal
Proceedings of the National Academy of Sciences of the United States of America
Abbr.
Proc Natl Acad Sci U S A
ISSN
0027-8424
Published
1993-09-15
Pages
8337-41
Language
English
Region
United States
NLM ID
7505876
PMCID
PMC47351
Subset
IM
Corrections
CommentIn
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]