Department of Biochemistry and the Siebens-Drake Research Institute, Schulich School of Medicine and Dentistry, University of Western Ontario, London, Ontario, Canada N6A 5C1.
Sci Signal. 2010 May 4;3(120):ra34. doi: 10.1126/scisignal.2000796.
Cellular functions require specific protein-protein interactions that are often mediated by modular domains that use binding pockets to engage particular sequence motifs in their partners. Yet, how different members of a domain family select for distinct sequence motifs is not fully understood. The human genome encodes 120 Src homology 2 (SH2) domains (in 110 proteins), which mediate protein-protein interactions by binding to proteins with diverse phosphotyrosine (pTyr)-containing sequences. The structure of the SH2 domain of BRDG1 bound to a peptide revealed a binding pocket that was blocked by a loop residue in most other SH2 domains. Analysis of 63 SH2 domain structures suggested that the SH2 domains contain three binding pockets, which exhibit selectivity for the three positions after the pTyr in a peptide, and that SH2 domain loops defined the accessibility and shape of these pockets. Despite sequence variability in the loops, we identified conserved structural features in the loops of SH2 domains responsible for controlling access to these surface pockets. We engineered new loops in an SH2 domain that altered specificity as predicted. Thus, selective blockage of binding subsites or pockets by surface loops provides a molecular basis by which the diverse modes of ligand recognition by the SH2 domain may have evolved and provides a framework for engineering SH2 domains and designing SH2-specific inhibitors.
细胞功能需要特定的蛋白质-蛋白质相互作用,这些相互作用通常由模块化结构域介导,这些结构域利用结合口袋与伴侣中的特定序列基序结合。然而,一个结构域家族的不同成员如何选择不同的序列基序还不完全清楚。人类基因组编码了 120 个Src 同源结构域 2 (SH2) (在 110 种蛋白质中),通过与含有不同磷酸酪氨酸 (pTyr) 序列的蛋白质结合来介导蛋白质-蛋白质相互作用。BRDG1 的 SH2 结构域与肽结合的结构揭示了一个结合口袋,大多数其他 SH2 结构域的环残基将其阻断。对 63 个 SH2 结构域结构的分析表明,SH2 结构域包含三个结合口袋,它们对肽中 pTyr 后的三个位置表现出选择性,并且 SH2 结构域环定义了这些口袋的可及性和形状。尽管环中的序列可变性很大,但我们在负责控制这些表面口袋可及性的 SH2 结构域环中确定了保守的结构特征。我们在 SH2 结构域中设计了新的环,根据预测改变了特异性。因此,表面环对结合亚位点或口袋的选择性阻断为 SH2 结构域识别配体的多种模式可能进化的分子基础提供了依据,并为 SH2 结构域的工程改造和 SH2 特异性抑制剂的设计提供了框架。