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Csk对Src蛋白酪氨酸激酶进行有效调控的结构要求。

Structural requirements for the efficient regulation of the Src protein tyrosine kinase by Csk.

作者信息

Koegl M, Courtneidge S A, Superti-Furga G

机构信息

Differentiation Programme, European Molecular Biology Laboratory, Heidelberg, Germany.

出版信息

Oncogene. 1995 Dec 7;11(11):2317-29.

PMID:8570183
Abstract

Protein tyrosine kinases of the Src family are negatively regulated by phosphorylation in the C-terminal tail of the molecule. A different protein tyrosine kinase, Csk, is largely responsible for this regulation. The phosphorylated tail of c-Src engages with the SH2 domain in a conformation that is associated with low kinase activity and which involves stabilization by the SH3 domain. Inducible expression of c-Src in fission yeast is lethal unless Csk is coexpressed. Using this assay we present evidence that Src regulation by C-terminal phosphorylation does not require the myristylation signal or the unique domain at the N-terminus of the Src protein. Mutagenesis of the SH3 and SH2 domains of Csk show that neither are necessary in yeast or in vitro for efficient regulation of Src. Mutation of Tyr416 of Src, a site of autophosphorylation common to most protein tyrosine kinases, abolished the ability of Src to arrest growth of phosphorylate endogenous proteins. Tyr416 had the same effect on a shorter form of Src consisting of the kinase domain only, indicating that the mutation affects a property intrinsic to the catalytic domain. The residual activity of full-length Src mutated at Tyr416 is efficiently repressed by Csk action, suggesting that regulation by C-terminal phosphorylation does not act by preventing phosphorylation at Tyr416.

摘要

Src家族的蛋白酪氨酸激酶在分子的C末端尾巴中通过磷酸化受到负调控。一种不同的蛋白酪氨酸激酶Csk在很大程度上负责这种调控。c-Src的磷酸化尾巴以一种与低激酶活性相关的构象与SH2结构域结合,这种构象涉及SH3结构域的稳定作用。在裂殖酵母中诱导表达c-Src是致死性的,除非同时共表达Csk。利用该检测方法,我们提供证据表明,C末端磷酸化对Src的调控不需要肉豆蔻酰化信号或Src蛋白N末端的独特结构域。对Csk的SH3和SH2结构域进行诱变表明,在酵母中或体外,它们对于有效调控Src都不是必需的。Src的Tyr416位点突变,这是大多数蛋白酪氨酸激酶共有的自磷酸化位点,消除了Src使内源性蛋白磷酸化从而阻止生长的能力。Tyr416对仅由激酶结构域组成的较短形式的Src具有相同的作用,表明该突变影响催化结构域固有的特性。在Tyr416处突变的全长Src的残余活性被Csk的作用有效抑制, 这表明C末端磷酸化调控并非通过阻止Tyr416处的磷酸化起作用。

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