Marasco Michelangelo, Carlomagno Teresa
Leibniz University Hannover, Institute of Organic Chemistry and Centre for Biomolecular Drug Research, Schneiderberg 38, 30167 Hannover, Germany.
Helmholtz Centre for Infection Research, Group of Structural Chemistry, Inhoffenstrasse 7, 38124 Braunschweig, Germany.
J Struct Biol X. 2020 May 27;4:100026. doi: 10.1016/j.yjsbx.2020.100026. eCollection 2020.
Phosphotyrosine (pY) signaling is instrumental to numerous cellular processes. pY recognition occurs through specialized protein modules, among which the Src-homology 2 (SH2) domain is the most common. SH2 domains are small protein modules with an invariant fold, and are present in more than a hundred proteins with different function. Here we ask the question of how such a structurally conserved, small protein domain can recognize distinct phosphopeptides with the breath of binding affinity, specificity and kinetic parameters necessary for proper control of pY-dependent signaling and rapid cellular response. We review the current knowledge on structure, thermodynamics and kinetics of SH2-phosphopeptide complexes and conclude that selective phosphopeptide recognition is governed by both structure and dynamics of the SH2 domain, as well as by the kinetics of the binding events. Further studies on the thermodynamic and kinetic properties of SH2-phosphopeptide complexes, beyond their structure, are required to understand signaling regulation.
磷酸酪氨酸(pY)信号传导对众多细胞过程至关重要。pY识别通过专门的蛋白质模块进行,其中Src同源2(SH2)结构域最为常见。SH2结构域是具有不变折叠的小蛋白质模块,存在于一百多种具有不同功能的蛋白质中。在这里,我们提出一个问题:这样一个结构保守的小蛋白质结构域如何能够识别具有不同磷酸肽的结合亲和力、特异性和动力学参数,这些参数对于正确控制pY依赖性信号传导和快速细胞反应是必需的。我们回顾了关于SH2-磷酸肽复合物的结构、热力学和动力学的当前知识,并得出结论,选择性磷酸肽识别受SH2结构域的结构和动力学以及结合事件的动力学控制。为了理解信号调节,需要对SH2-磷酸肽复合物的热力学和动力学性质进行进一步研究,而不仅仅是其结构。