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使用荧光Ras结合结构域分析活细胞中的Ras和Rap激活情况。

Analysis of Ras and Rap activation in living cells using fluorescent Ras binding domains.

作者信息

Bivona Trever G, Philips Mark R

机构信息

Department of Medicine, NYU School of Medicine, 550 First Avenue, New York, NY 10016, USA.

出版信息

Methods. 2005 Oct;37(2):138-45. doi: 10.1016/j.ymeth.2005.05.022.

Abstract

Ras GTPases regulate cellular growth and differentiation and are modulated by myriad stimuli including growth factors, cytokines, antigens, and UV irradiation. Ras GTPases are molecular switches that are active when GTP-bound and inactive when GDP-bound. The ability of these GTPases to signal requires that the GTP-bound form engage downstream effectors, interactions that occur only on the cytosolic surface of cellular membranes. Ras family proteins include H-Ras, N-Ras, K-Ras, and Rap1. Insight into the regulation and signaling properties of these molecules has come largely from in vitro studies relying on cellular extracts prepared following cellular stimulation. Since Ras GTPases are expressed on multiple cellular compartments that include the plasma membrane, vesicles derived from the plasma membrane, and other internal membranes such as the ER and Golgi complex, analysis of how their spatial distribution modulates signaling has remained unknown. We have developed fluorescent, GFP-based probes capable of selectively binding GTP-bound Ras or Rap1 in living cells. We have used these reporters to examine sites of cellular activation of Ras and Rap1 during growth factor stimulation. These studies have revealed new insights into the platforms from which these GTPases signal and have led to the hypothesis that GTPase signaling is modulated in a compartmentalized fashion. Here, we describe the design and implementation of fluorescent probes for Ras and Rap1.

摘要

Ras小GTP酶调节细胞生长和分化,并受到多种刺激的调节,包括生长因子、细胞因子、抗原和紫外线照射。Ras小GTP酶是分子开关,结合GTP时处于活性状态,结合GDP时处于非活性状态。这些小GTP酶发出信号的能力要求结合GTP的形式与下游效应器结合,这种相互作用仅发生在细胞膜的胞质表面。Ras家族蛋白包括H-Ras、N-Ras、K-Ras和Rap1。对这些分子的调节和信号特性的深入了解主要来自体外研究,这些研究依赖于细胞刺激后制备的细胞提取物。由于Ras小GTP酶在多个细胞区室表达,包括质膜、源自质膜的囊泡以及其他内膜,如内质网和高尔基体复合体,因此它们的空间分布如何调节信号传导的分析仍然未知。我们开发了基于绿色荧光蛋白(GFP)的荧光探针,能够在活细胞中选择性结合结合GTP的Ras或Rap1。我们使用这些报告分子来研究生长因子刺激过程中Ras和Rap1的细胞激活位点。这些研究揭示了对这些小GTP酶发出信号的平台的新见解,并提出了小GTP酶信号传导以区室化方式调节的假设。在这里,我们描述了用于Ras和Rap1的荧光探针的设计和应用。

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