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Ras和Rho家族小GTP酶的多碱性区域:蛋白质相互作用和膜结合的调节因子以及核定位信号序列位点。

The polybasic region of Ras and Rho family small GTPases: a regulator of protein interactions and membrane association and a site of nuclear localization signal sequences.

作者信息

Williams Carol L

机构信息

Molecular Pharmacology Laboratory, Guthrie Research Institute, One Guthrie Square, Sayre, PA 18840, USA.

出版信息

Cell Signal. 2003 Dec;15(12):1071-80. doi: 10.1016/s0898-6568(03)00098-6.

Abstract

Many small GTPases in the Ras and Rho families have a C-terminal polybasic region (PBR) comprised of multiple lysines or arginines. The PBR controls diverse functions of these small GTPases, including their ability to associate with membranes, interact with specific proteins, and localize in subcellular compartments. Different signaling pathways mediated by Ras and Rho family members may converge when the small GTPases are directed by their PBRs to shared binding sites in specific proteins or at cell membranes. The PBR promotes the interactions of small GTPases with SmgGDS, which is a nucleocytoplasmic shuttling protein that stimulates guanine nucleotide exchange by small GTPases. The PBR of Rac1 was recently found to have a functional nuclear localization signal (NLS) sequence, which enhances the nuclear accumulation of protein complexes containing SmgGDS and Rac1. Sequence analysis demonstrates that canonical NLS sequences (K-K/R-x-K/R) are present in the PBRs of additional Ras and Rho family members, and are evolutionarily conserved across several phyla. These findings suggest that the PBR regulates the nucleocytoplasmic shuttling of some Ras and Rho family members when they are in protein complexes that are too large to diffuse through nuclear pores. These diverse functions of the PBR indicate its critical role in signaling by Ras and Rho family GTPases.

摘要

Ras和Rho家族中的许多小GTP酶都有一个由多个赖氨酸或精氨酸组成的C末端多碱性区域(PBR)。PBR控制这些小GTP酶的多种功能,包括它们与膜结合、与特定蛋白质相互作用以及定位于亚细胞区室的能力。当小GTP酶通过其PBR被导向特定蛋白质或细胞膜上的共享结合位点时,由Ras和Rho家族成员介导的不同信号通路可能会汇聚。PBR促进小GTP酶与SmgGDS的相互作用,SmgGDS是一种核质穿梭蛋白,可刺激小GTP酶进行鸟嘌呤核苷酸交换。最近发现Rac1的PBR具有功能性核定位信号(NLS)序列,该序列可增强包含SmgGDS和Rac1的蛋白质复合物的核积累。序列分析表明,典型的NLS序列(K-K/R-x-K/R)存在于其他Ras和Rho家族成员的PBR中,并且在几个门中具有进化保守性。这些发现表明,当一些Ras和Rho家族成员处于太大而无法通过核孔扩散的蛋白质复合物中时,PBR会调节它们的核质穿梭。PBR的这些多样功能表明其在Ras和Rho家族GTP酶信号传导中起关键作用。

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