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首页> 外文期刊>Oncogene >Transactivation of Abl by the Crk II adapter protein requires a PNAY sequence in the Crk C-terminal SH3 domain
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Transactivation of Abl by the Crk II adapter protein requires a PNAY sequence in the Crk C-terminal SH3 domain

机译:Crk II衔接蛋白对Abl的反式激活需要Crk C末端SH3结构域中的PNAY序列

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To gain a better understanding of how Crk II regulates the function of the Abl tyrosine kinase, we explored the function of the C-terminal linker and SH3 domain, a region of Crk II that is still poorly understood. Molecular modeling, tryptophan fluorescence, and covariation sequence alignment indicate that the Crk-SH3-C has a unique binding groove and RT loop not observed in typical SH3 domains. Based on these models, we made a series of mutations in the linker and in residues predicted to destabilize the putative binding pocket and RT loop. In Abl transactivation assays, Y222F and P225A mutations in the linker resulted in strong transactivation of Abl by Crk II. However, mutations predicted to be at the surface of the Crk SH3-C were not activators of Abl. Interestingly, combinations of activating mutations of Crk II with mutations in the highly conserved PNAY sequence in the SH3-C inactivated the activating mutations, suggesting that the SH3-C is necessary for activation. Our data provide insight into the role of highly conserved residues in the Crk-SH3-C, suggesting a mechanism for how the linker and the Crk-SH3-C function in the transactivation of the Abl tyrosine kinase.
机译:为了更好地了解Crk II如何调节Abl酪氨酸激酶的功能,我们探索了C末端接头和SH3结构域的功能,而Crk II的这一区域仍知之甚少。分子建模,色氨酸荧光和协变序列比对表明Crk-SH3-C具有独特的结合沟和RT环,在典型的SH3域中未观察到。基于这些模型,我们在接头和残基中进行了一系列突变,这些突变预计会破坏假定的结合口袋和RT环的稳定性。在Abl反式激活测定中,接头中的Y222F和P225A突变导致Crk II对Abl的强烈反式激活。但是,预测在Crk SH3-C表面的突变不是Abl的激活剂。有趣的是,Crk II的激活突变与SH3-C中高度保守的PNAY序列中的突变的结合使激活突变失活,这表明SH3-C是激活所必需的。我们的数据提供了对Crk-SH3-C中高度保守的残基作用的见解,为接头和Crk-SH3-C如何在Abl酪氨酸激酶的反式激活中发挥了作用提供了一种机制。

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