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Expanding functions of GIT Arf GTPase-activating proteins, PIX Rho guanine nucleotide exchange factors and GIT-PIX complexes

机译:GIT Arf GTPase激活蛋白,PIX Rho鸟嘌呤核苷酸交换因子和GIT-PIX复合物的扩展功能

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摘要

The GIT proteins, GIT1 and GIT2, are GTPase-activating proteins (inactivators) for the ADP-ribosylation factor (Arf) small GTP-binding proteins, and function to limit the activity of Arf proteins. The PIX proteins, alpha-PIX and beta-PIX (also known as ARHGEF6 and ARHGEF7, respectively), are guanine nucleotide exchange factors (activators) for the Rho family small GTP-binding protein family members Rac1 and Cdc42. Through their multi-domain structures, GIT and PIX proteins can also function as signaling scaffolds by binding to numerous protein partners. Importantly, the constitutive association of GIT and PIX proteins into oligomeric GIT-PIX complexes allows these two proteins to function together as subunits of a larger structure that coordinates two distinct small GTP-binding protein pathways and serves as multivalent scaffold for the partners of both constituent subunits. Studies have revealed the involvement of GIT and PIX proteins, and of the GIT-PIX complex, in numerous fundamental cellular processes through a wide variety of mechanisms, pathways and signaling partners. In this Commentary, we discuss recent findings in key physiological systems that exemplify current understanding of the function of this important regulatory complex. Further, we draw attention to gaps in crucial information that remain to be filled to allow a better understanding of the many roles of the GIT-PIX complex in health and disease.
机译:GIT蛋白GIT1和GIT2是ADP核糖基化因子(Arf)小GTP结合蛋白的GTPase激活蛋白(灭活剂),其功能是限制Arf蛋白的活性。 PIX蛋白,α-PIX和β-PIX(分别也称为ARHGEF6和ARHGEF7)是Rho家族小GTP结合蛋白家族成员Rac1和Cdc42的鸟嘌呤核苷酸交换因子(激活剂)。通过它们的多结构域结构,GIT和PIX蛋白还可以通过与众多蛋白伴侣结合而充当信号转导支架。重要的是,GIT和PIX蛋白组成低聚GIT-PIX复合物的本构关联使这两种蛋白可以作为较大结构的亚基一起发挥功能,该结构协调两个截然不同的小GTP结合蛋白途径,并充当两个组成部分伴侣的多价支架亚单位。研究表明,GIT和PIX蛋白以及GIT-PIX复合物通过多种机制,途径和信号传导伙伴参与了许多基本细胞过程。在这篇评论中,我们讨论了关键生理系统的最新发现,这些发现例证了当前对该重要调控复合体功能的理解。此外,我们提请注意关键信息中的空白,这些空白有待填补,以便更好地了解GIT-PIX复合物在健康和疾病中的许多作用。

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