Adapting to change: resolving the dynamic and dual roles of NCK1 and NCK2

信号转导衔接蛋白 SH2域 SH3域 生物 原癌基因酪氨酸蛋白激酶Src 效应器 计算生物学 磷酸酪氨酸结合域 连接器 细胞生物学 信号转导 计算机科学 操作系统
作者
Valentine Teyssier,Casey R. Williamson,Erka Shata,Stephanie P. Rosen,Nina Jones,Nicolas Bisson
出处
期刊:Biochemical Journal [Portland Press]
卷期号:481 (20): 1411-1435
标识
DOI:10.1042/bcj20230232
摘要

Adaptor proteins play central roles in the assembly of molecular complexes and co-ordinated activation of specific pathways. Through their modular domain structure, the NCK family of adaptor proteins (NCK1 and NCK2) link protein targets via their single SRC Homology (SH) 2 and three SH3 domains. Classically, their SH2 domain binds to phosphotyrosine motif-containing receptors (e.g. receptor tyrosine kinases), while their SH3 domains bind polyproline motif-containing cytoplasmic effectors. Due to these functions being established for both NCK1 and NCK2, their roles were inaccurately assumed to be redundant. However, in contrast with this previously held view, NCK1 and NCK2 now have a growing list of paralog-specific functions, which underscores the need to further explore their differences. Here we review current evidence detailing how these two paralogs are unique, including differences in their gene/protein regulation, binding partners and overall contributions to cellular functions. To help explain these contrasting characteristics, we then discuss SH2/SH3 structural features, disordered interdomain linker regions and post-translational modifications. Together, this review seeks to highlight the importance of distinguishing NCK1 and NCK2 in research and to pave the way for investigations into the origins of their interaction specificity.

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