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Antagonism between binding site affinity and conformational dynamics tunes alternative cis-interactions within Shp2

机译:结合位点亲和力和构象动力学之间的拮抗作用调节Shp2内的替代顺式相互作用。

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摘要

Protein functions are largely affected by their conformations. This is exemplified in proteins containing modular domains. However, the evolutionary dynamics that define and adapt the conformation of such modular proteins remain elusive. Here we show that cis-interactions between the C-terminal phosphotyrosines and SH2 domain within the protein tyrosine phosphatase Shp2 can be tuned by an adaptor protein, Grb2. The competitiveness of two phosphotyrosines, namely pY542 and pY580, for cis-interaction with the same SH2 domain is governed by an antagonistic combination of contextual amino acid sequence and position of the phosphotyrosines. Specifically, pY580 with the combination of a favorable position and an adverse sequence has an overall advantage over pY542. Swapping the sequences of pY542 and pY580 results in one dominant form of cis-interaction and subsequently inhibits the trans-regulation by Grb2. Thus, the antagonistic combination of sequence and position may serve as a basic design principle for proteins with tunable conformations.
机译:蛋白质功能在很大程度上受到其构象的影响。这在含有模块化结构域的蛋白质中得到了例证。但是,定义和适应这种模块化蛋白质构象的进化动力学仍然难以捉摸。在这里,我们显示蛋白酪氨酸磷酸酶Shp2中的C末端磷酸酪氨酸和SH2域之间的顺式相互作用可以通过衔接蛋白Grb2进行调节。两种磷酸酪氨酸,即pY542和pY580,与同一个SH2结构域进行顺式相互作用的竞争性取决于上下文氨基酸序列和磷酸酪氨酸位置的拮抗组合。特别地,具有有利位置和不利序列的组合的pY580具有优于pY542的总体优势。交换pY542和pY580的序列会导致一种主要形式的顺式相互作用,并随后抑制Grb2的反式调节。因此,序列和位置的拮抗组合可以用作具有可调构象的蛋白质的基本设计原理。

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