Palmitoylation of p59(fyn) is reversible and sufficient for plasma membrane association Journal Article


Authors: Wolven, A.; Okamura, H.; Rosenblatt, Y.; Resh, M. D.
Article Title: Palmitoylation of p59(fyn) is reversible and sufficient for plasma membrane association
Abstract: Members of the Src family of protein tyrosine kinases are localized to subspecialized regions of the plasma membrane. Herein we show that the N- terminal SH4 region of the Src family member p59(fyn) (Fyn) is both necessary and sufficient for targeting of Fyn and heterologous proteins to the plasma membrane and detergent-insoluble subdomains. Attachment of the first 16 amino acids of Fyn to a normally cytosolic protein, β-galactosidase, resulted in distinct plasma membrane localization of the chimeric protein. Mutation of the palmitoylation site (cysteine-3) within Fyn16-β-galactosidase or wild- type Fyn abrogated plasma membrane localization, resulting in redistribution of the mutant proteins into intracellular membranes. Substitution of the SH4 motif within Fyn with heterologous sequences from other palmitoylated proteins (Gαo and GAP43) revealed that the presence of palmitate is sufficient to direct plasma membrane localization independent of surrounding amino acid sequences and myristate. Palmitoylated Fyn chimeras were also enriched in the Triton X-100-resistant matrix, whereas nonpalmitoylated forms of these proteins were detected in the detergent-soluble fraction. The palmitate moiety on Fyn exhibited a half-life of 1.5-2 h. In contrast, the half-life of the polypeptide backbone was 8 h, indicating that palmitoylation is a reversible modification. These studies establish that the palmitoylated SH4 sequence of Fyn can be used to specifically target proteins to the plasma membrane in a reversible manner.
Keywords: controlled study; oncoprotein; proto-oncogene proteins; nonhuman; protein localization; animal cell; mouse; animal; metabolism; animals; mice; cell compartmentalization; protein targeting; protein tyrosine kinase; cos cells; amino acid sequence; hybrid protein; recombinant fusion proteins; recombinant proteins; recombinant protein; cell membrane; cell strain cos1; beta galactosidase; cellular distribution; cell strain 3t3; protein modification; 3t3 cells; palmitoylation; octoxinol; octoxynol; protein kinase fyn; proto-oncogene proteins c-fyn; fyn protein, mouse; myristic acid derivative; palmitic acid derivative; palmitates; cytoplasm protein; priority journal; article; cell compartmentation; myristates
Journal Title: Molecular Biology of the Cell
Volume: 8
Issue: 6
ISSN: 1059-1524
Publisher: The American Society for Cell Biology  
Date Published: 1997-06-01
Start Page: 1159
End Page: 1173
Language: English
PUBMED: 9201723
PROVIDER: scopus
PMCID: PMC305721
DOI: 10.1091/mbc.8.6.1159
DOI/URL:
Notes: Article -- Export Date: 17 March 2017 -- Source: Scopus
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  1. Marilyn D Resh
    120 Resh