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Src SH2结构域对c-Src酪氨酸激酶活性的调节

Regulation of c-Src tyrosine kinase activity by the Src SH2 domain.

作者信息

Liu X, Brodeur S R, Gish G, Songyang Z, Cantley L C, Laudano A P, Pawson T

机构信息

Division of Molecular and Developmental Biology, Mount Sinai Hospital, Toronto, Canada.

出版信息

Oncogene. 1993 May;8(5):1119-26.

PMID:7683128
Abstract

The protein-tyrosine kinase activity of pp60c-src (c-Src) is inhibited by phosphorylation of tyr527, within the c-Src c-terminal tail. Genetic and biochemical data have suggested that this negative regulation requires an intact Src homology 2 (SH2) domain. Since SH2 domains recognize phosphotyrosine, it is possible that these two non-catalytic domains associate, and thereby repress c-Src kinase activity. Consistent with this model, an isolated Src SH2 domain expressed in bacteria as a GST fusion protein bound in vitro to a synthetic phosphotyrosine-containing peptide modeled on the C-terminal 13 residues of the c-Src tail. Binding was absolutely dependent on phosphorylation of tyr527 in the tail peptide, and was modified by both the length and sequence of the peptide. Competition experiments indicated only a moderate binding affinity between the Src SH2 domain and the phosphorylated tail. A distinct phosphotyrosine-containing peptide previously identified as binding the Src SH2 domain with high affinity stimulated c-Src tyrosine kinase activity in vitro, possibly by competing with the endogenous tail phosphorylation site for binding to the SH2 domain. Indeed, this activation was competitively inhibited by purified bacterial Src SH2 domain. These data provide direct evidence that the c-Src tail has an intrinsic affinity for the Src SH2 domain, and suggest that such an interaction in the intact molecule contributes to maintaining c-Src in an inactive form.

摘要

pp60c-src(c-Src)的蛋白酪氨酸激酶活性受到c-Src C末端尾巴中酪氨酸527磷酸化的抑制。遗传学和生物化学数据表明,这种负调控需要完整的Src同源2(SH2)结构域。由于SH2结构域识别磷酸酪氨酸,这两个非催化结构域有可能结合,从而抑制c-Src激酶活性。与该模型一致的是,在细菌中作为GST融合蛋白表达的分离的Src SH2结构域在体外与一种基于c-Src尾巴C末端13个残基构建的含磷酸酪氨酸的合成肽结合。这种结合绝对依赖于尾巴肽中酪氨酸527的磷酸化,并且会受到肽的长度和序列的影响。竞争实验表明Src SH2结构域与磷酸化尾巴之间的结合亲和力适中。先前鉴定出的一种与Src SH2结构域具有高亲和力的独特的含磷酸酪氨酸肽在体外刺激了c-Src酪氨酸激酶活性,可能是通过与内源性尾巴磷酸化位点竞争结合SH2结构域来实现的。实际上,这种激活被纯化的细菌Src SH2结构域竞争性抑制。这些数据提供了直接证据,表明c-Src尾巴对Src SH2结构域具有内在亲和力,并表明完整分子中的这种相互作用有助于使c-Src维持在无活性形式。

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