Myristoylation and membrane binding regulate c-Src stability and kinase activity Journal Article


Authors: Patwardhan, P.; Resh, M. D.
Article Title: Myristoylation and membrane binding regulate c-Src stability and kinase activity
Abstract: Myristoylation is critical for membrane association of Src kinases, but a role for myristate in regulating other aspects of Src biology has not been explored. In the c-Abl tyrosine kinase, myristate binds within a hydrophobic pocket at the base of the kinase domain and latches the protein into an autoinhibitory conformation. A similar pocket has been predicted to exist in c-Src, raising the possibility that Src might also be regulated by myristoylation. Here we show that in contrast to the case for c-Abl, myristoylation exerts a positive effect on c-Src kinase activity. We also demonstrate that myristoylation and membrane binding regulate c-Src ubiquitination and degradation. Nonmyristoylated c-Src exhibited reduced kinase activity but had enhanced stability compared to myristoylated c-Src. We then mutated critical residues in the predicted myristate binding pocket of c-Src. Mutation of L360 and/or E486 had no effect on c-Src membrane binding or localization. However, constructs containing a T456A mutation were partially released from the membrane, suggesting that mutagenesis could induce c-Src to undergo an artificial myristoyl switch. All of the pocket mutants exhibited decreased kinase activity. We concluded that myristoylation and the pocket residues regulate c-Src, but in a manner very different from that for c-Abl. Copyright © 2010, American Society for Microbiology. All Rights Reserved.
Keywords: protein expression; unclassified drug; genetics; protein localization; animal; metabolism; animals; enzyme degradation; protein binding; protein stability; enzyme activity; abelson kinase; protein tyrosine kinase; cercopithecus aethiops; cos cells; gene expression regulation; chemistry; ubiquitination; cell membrane; cell strain cos1; cercopithecus; binding site; down regulation; binding sites; cbl protein; proto-oncogene proteins c-cbl; src-family kinases; membrane binding; chickens; enzyme stability; 2 hydroxymyristate; myristic acid derivative; protein kinase p60; myristic acid; myristylation; chicken
Journal Title: Molecular and Cellular Biology
Volume: 30
Issue: 17
ISSN: 0270-7306
Publisher: American Society for Microbiology  
Date Published: 2010-09-01
Start Page: 4094
End Page: 4107
Language: English
DOI: 10.1128/mcb.00246-10
PUBMED: 20584982
PROVIDER: scopus
PMCID: PMC2937550
DOI/URL:
Notes: --- - "Cited By (since 1996): 1" - "Export Date: 20 April 2011" - "CODEN: MCEBD" - "Source: Scopus"
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  1. Marilyn D Resh
    120 Resh