首页> 外文期刊>Biopolymers: Original Research on Biomolecules and Biomolecular Assemblies >Differential Recognition of Syk-Binding Sites by Each of the Two Phosphotyrosine-Binding Pockets of the Vav SH2 Domain
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Differential Recognition of Syk-Binding Sites by Each of the Two Phosphotyrosine-Binding Pockets of the Vav SH2 Domain

机译:Vav SH2域的两个磷酸酪氨酸结合口袋中的每个的Syk绑定站点的差异识别。

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The association of spleen tyrosine kinase (Syk), a central tyrosine kinase in B cell signaling, with Vav SH2 domain is controlled by phosphorylation of two closely spaced tyrosines in Syk linker B: Y342 and Y346. Previous studies established both singly phosphorylated and doubly phosphorylated forms play a role in signaling. The structure of the doubly phosphorylated form identified a new recognition of phosphotyrosine whereby two phosphotyrosines bind simultaneously to the Vav SH2 domain, one in the canonical pTyr pocket and one in the specificity pocket on the opposite side of the central bsheet. It is unknown if the specificity pocket can bind phosphotyrosine independent of phosphotyrosine binding the pTyr pocket. To address this gap in knowledge, we determined the structure of the complex between Vav1 SH2 and a peptide (SykLB-YpY) modeling the singly phosphorylated-Y346 form of Syk with unphosphorylated Y342. The nuclear magnetic resonance (NMR) data conclusively establish that recognition of phosphotyrosine is swapped between the two pockets; phosphorylated pY346 binds the specificity pocket of Vav1 SH2, and unphosphorylated Y342 occupies what is normally the pTyr binding pocket. Nearly identical changes in chemical shifts occurred upon binding all three forms of singly and doubly phosphorylated peptides; however, somewhat smaller shift perturbations for SykLB-YpY from residues in regions of high internal mobility suggest that internal motions are coupled to binding affinity. The differential recognition that includes this swapped binding of phosphotyrosine to the specificity pocket of Vav SH2 increases the repertoire of possible phosphotyrosine binding by SH2 domains in regulating protein-protein interactions in cellular signaling.
机译:脾酪氨酸激酶(Syk)是B细胞信号传导中的中心酪氨酸激酶与Vav SH2结构域的关联是通过Syk接头B中两个紧密间隔的酪氨酸磷酸化来控制的:Y342和Y346。先前的研究建立了单磷酸化和双磷酸化形式均在信号传导中起作用。双磷酸化形式的结构确定了对磷酸酪氨酸的新认识,其中两种磷酸酪氨酸同时与Vav SH2结构域结合,一个位于规范pTyr口袋中,一个位于中央bsheet另一侧的特异性口袋中。特异性袋是否可以结合磷酸酪氨酸而不依赖于磷酸酪氨酸与pTyr袋的结合尚不清楚。为了解决这一知识空白,我们确定了Vav1 SH2与模拟未磷酸化Y342的Syk的单磷酸化-Y346形式的肽(SykLB-YpY)之间的复合物结构。核磁共振(NMR)数据最终确定了磷酸酪氨酸的识别在两个口袋之间交换。磷酸化的pY346结合Vav1 SH2的特异性口袋,而未磷酸化的Y342占据通常的pTyr结合口袋。结合所有三种形式的单磷酸化和双磷酸化的肽后,化学位移几乎发生了相同的变化。但是,SykLB-YpY来自内部内部迁移率较高的区域中的残基的位移偏移较小,这表明内部运动与结合亲和力相关。包括磷酸酪氨酸与Vav SH2特异性口袋的这种交换结合的差异识别,增加了SH2结构域在调节细胞信号转导中蛋白质与蛋白质相互作用中可能的磷酸酪氨酸结合的能力。

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