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调控人类RGS2亚细胞定位和功能的机制。

Mechanisms governing subcellular localization and function of human RGS2.

作者信息

Heximer S P, Lim H, Bernard J L, Blumer K J

机构信息

Department of Cell Biology and Physiology, Washington University School of Medicine, St. Louis, Missouri 63110, USA.

出版信息

J Biol Chem. 2001 Apr 27;276(17):14195-203. doi: 10.1074/jbc.M009942200. Epub 2001 Jan 30.

DOI:10.1074/jbc.M009942200
PMID:11278586
Abstract

RGS proteins negatively regulate heterotrimeric G proteins at the plasma membrane. RGS2-GFP localizes to the nucleus, plasma membrane, and cytoplasm of HEK293 cells. Expression of activated G(q) increased RGS2 association with the plasma membrane and decreased accumulation in the nucleus, suggesting that signal-induced redistribution may regulate RGS2 function. Thus, we identified and characterized a conserved N-terminal domain in RGS2 that is necessary and sufficient for plasma membrane localization. Mutational and biophysical analyses indicated that this domain is an amphipathic alpha-helix that binds vesicles containing acidic phospholipids. However, the plasma membrane targeting function of the amphipathic helical domain did not appear to be essential for RGS2 to attenuate signaling by activated G(q). Nevertheless, truncation mutants indicated that the N terminus is essential, potentially serving as a scaffold that binds receptors, signaling proteins, or nuclear components. Indeed, the RGS2 N terminus directs nuclear accumulation of GFP. Although RGS2 possesses a nuclear targeting motif, it lacks a nuclear import signal and enters the nucleus by passive diffusion. Nuclear accumulation of RGS2 does not limit its ability to attenuate G(q) signaling, because excluding RGS2 from the nucleus was without effect. RGS2 may nonetheless regulate signaling or other processes in the nucleus.

摘要

RGS蛋白在质膜上对异源三聚体G蛋白起负调控作用。RGS2 - GFP定位于HEK293细胞的细胞核、质膜和细胞质中。活化的G(q)的表达增加了RGS2与质膜的结合,并减少了其在细胞核中的积累,这表明信号诱导的重新分布可能调节RGS2的功能。因此,我们鉴定并表征了RGS2中一个保守的N端结构域,该结构域对于质膜定位是必需且充分的。突变和生物物理分析表明,该结构域是一个两亲性α螺旋,可结合含有酸性磷脂的囊泡。然而,两亲性螺旋结构域的质膜靶向功能对于RGS2减弱活化的G(q)的信号传导似乎并非必不可少。尽管如此,截短突变体表明N端是必需的,可能作为一个支架结合受体、信号蛋白或核成分。实际上,RGS2的N端引导GFP在细胞核中的积累。虽然RGS2具有核靶向基序,但它缺乏核输入信号,通过被动扩散进入细胞核。RGS2在细胞核中的积累并不限制其减弱G(q)信号传导的能力,因为将RGS2排除在细胞核外没有效果。尽管如此,RGS2可能仍会调节细胞核中的信号传导或其他过程。

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