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Structure of a regulatory complex involving the Abl SH3 domain, the Crk SH2 domain, and a Crk-derived phosphopeptide

机译:涉及Abl SH3结构域,Crk SH2结构域和Crk衍生的磷酸肽的调控复合物的结构

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摘要

On phosphorylation of Y221 by Abelson (Abl) kinase, the Crk-II adapter protein undergoes an intramolecular reorganization initiated by the binding of its own Src homology 2 (SH2) domain to the pY221 site. Conformational changes induced by phosphotyrosine recognition promote the binding of the Src homology 3 (SH3) domain of the Abl tyrosine kinase to a proline-rich loop located between the βD and βE strands of the SH2 domain (DE loop). We have determined the NMR solution structure of the ternary complex of the Abl SH3 domain with the Crk SH2 domain bound to a Crk pY221 phosphopeptide. The SH2 domain bridges two ligands that bind at distinct sites. The interaction between the Abl SH3 domain and the Crk SH2 domain is localized to a canonical eight-residue site within the DE loop. From ~(15)N relaxation experiments, the DE loop of the SH2 domain in the complex displays a significant degree of conformational freedom. The structural and dynamic data therefore indicate that these SH2 and SH3 domains do not assume a unique orientation with respect to one another; rather, they appear to be only tethered via the DE loop. Thus, SH2 domain-SH3 domain interactions do not require additional tertiary contacts or restriction of domain orientation when a recognition motif is presented in a mobile loop. This complex between the Abl SH3 domain, Crk SH2 domain, and Crk phosphopeptide is an example of the extremely modular nature of regulatory proteins that provides a rich repertoire of mechanisms for control of biological function.
机译:在通过Abelson(Abl)激酶使Y221磷酸化后,Crk-II衔接子蛋白将经历分子内重组,该重组是通过其自身的Src同源2(SH2)域与pY221位点的结合而引发的。由磷酸酪氨酸识别引起的构象变化促进了Abl酪氨酸激酶的Src同源性3(SH3)结构域与位于SH2结构域的βD和βE链之间的富含脯氨酸的环(DE环)的结合。我们已经确定了Abl SH3结构域与Crk SH2结构域结合到Crk pY221磷酸肽的三元复合物的NMR溶液结构。 SH2结构域桥接两个在不同位点结合的配体。 Abl SH3结构域和Crk SH2结构域之间的相互作用被定位到DE循环内的一个规范的八残基位点。通过〜(15)N弛豫实验,复合物中SH2域的DE环显示出显着程度的构象自由度。因此,结构和动态数据表明,这些SH2和SH3域彼此之间不具有唯一的方向;相反,它们似乎仅通过DE循环进行绑定。因此,当在移动环中出现识别基序时,SH2域-SH3域的相互作用不需要额外的三级接触或域方向的限制。 Abl SH3结构域,Crk SH2结构域和Crk磷酸肽之间的这种复合物是调节蛋白的极端模块化性质的一个实例,该蛋白提供了丰富的生物学功能控制机制。

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