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Mutational analysis of the Src SH3 domain: the same residues of the ligand binding surface are important for intra- and intermolecular interactions.

机译:Src SH3域的突变分析:配体结合表面的相同残基对于分子内和分子间的相互作用很重要。

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摘要

The protein tyrosine kinase c-Src is negatively regulated by phosphorylation of Tyr527 in its C-terminal tail. The repressed state is achieved through intramolecular interactions involving the phosphorylated tail, the Src homology 2 (SH2) domain and the SH3 domain. Both the SH2 and SH3 domains have also been shown to mediate the intermolecular interaction of Src with several proteins. To test which amino acids of the Src SH3 domain are important for these interactions, and whether the intra- and intermolecular associations involve the same residues, we carried out a detailed mutational analysis of the presumptive interaction surface. All mutations of conserved hydrophobic residues had an effect on both inter- and intramolecular interactions of the Src SH3 domain, although not all amino acids were equally important. Chimeric molecules in which the Src SH3 domain was replaced with those of spectrin or Lck showed derepressed kinase activity, whereas a chimera containing the Fyn SH3 domain was fully regulated. Since spectrin and Lck SH3 domains share the conserved hydrophobic residues characteristic of SH3 domains, other amino acids must be important for specificity. Mutational analysis of non- or semi-conserved residues in the RT and n-Src loops showed that some of these were also involved in inter- and intramolecular interactions. Stable transfection of selected SH3 domain mutants into NIH-3T3 cells showed that despite elevated levels of phosphotyrosine, the cells were morphologically normal, indicating that the SH3 domain was required for efficient transformation of NIH-3T3 cells by Src.
机译:酪氨酸激酶c-Src在其C末端尾巴中被Tyr527磷酸化负调控。通过涉及磷酸化尾,Src同源2(SH2)域和SH3域的分子内相互作用来实现阻抑状态。 SH2和SH3结构域也已显示出介导Src与几种蛋白质的分子间相互作用。为了测试Src SH3结构域的哪些氨基酸对于这些相互作用至关重要,以及分子内和分子间的关联是否涉及相同的残基,我们对推定的相互作用表面进行了详细的突变分析。保守的疏水残基的所有突变都对Src SH3结构域的分子间和分子内相互作用都有影响,尽管并非所有氨基酸都同样重要。 Src SH3结构域被血影蛋白或Lck取代的嵌合分子显示出抑制的激酶活性,而含有Fyn SH3结构域的嵌合体则受到充分调节。由于血影蛋白和Lck SH3结构域共享SH3结构域的保守疏水残基,因此其他氨基酸对于特异性必不可少。对RT和n-Src环中非保守或半保守残基的突变分析表明,其中一些也参与分子间和分子间的相互作用。将选定的SH3结构域突变体稳定转染到NIH-3T3细胞中显示,尽管磷酸酪氨酸水平升高,但细胞在形态上是正常的,这表明SH3结构域是Src有效转化NIH-3T3细胞所必需的。

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