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Ras活性的时空调节提供方向感知。

Spatiotemporal regulation of Ras activity provides directional sensing.

作者信息

Zhang Sheng, Charest Pascale G, Firtel Richard A

机构信息

Section of Cell and Developmental Biology Division of Biological Sciences Center for Molecular Genetics University of California, San Diego 9500 Gilman Drive La Jolla, CA 92093-0380 USA.

出版信息

Curr Biol. 2008 Oct 28;18(20):1587-1593. doi: 10.1016/j.cub.2008.08.069.

Abstract

Cells' ability to detect and orient themselves in chemoattractant gradients has been the subject of numerous studies, but the underlying molecular mechanisms remain largely unknown [1]. Ras activation is the earliest polarized response to chemoattractant gradients downstream from heterotrimeric G proteins in Dictyostelium, and inhibition of Ras signaling results in directional migration defects [2]. Activated Ras is enriched at the leading edge, promoting the localized activation of key chemotactic effectors, such as PI3K and TORC2 [2-5]. To investigate the role of Ras in directional sensing, we studied the effect of its misregulation by using cells with disrupted RasGAP activity. We identified an ortholog of mammalian NF1, DdNF1, as a major regulator of Ras activity in Dictyostelium. We show that disruption of nfaA leads to spatially and temporally unregulated Ras activity, causing cytokinesis and chemotaxis defects. By using unpolarized, latrunculin-treated cells, we show that tight regulation of Ras is important for gradient sensing. Together, our findings suggest that Ras is part of the cell's compass and that the RasGAP-mediated regulation of Ras activity affects directional sensing.

摘要

细胞在化学引诱剂梯度中检测自身并定向的能力一直是众多研究的主题,但潜在的分子机制在很大程度上仍然未知[1]。在盘基网柄菌中,Ras激活是异源三聚体G蛋白下游对化学引诱剂梯度的最早极化反应,抑制Ras信号传导会导致定向迁移缺陷[2]。活化的Ras在前缘富集,促进关键趋化效应器(如PI3K和TORC2)的局部活化[2-5]。为了研究Ras在定向感知中的作用,我们通过使用RasGAP活性被破坏的细胞来研究其失调的影响。我们鉴定出哺乳动物NF1的直系同源物DdNF1,作为盘基网柄菌中Ras活性的主要调节因子。我们表明,nfaA的破坏导致Ras活性在空间和时间上不受调控,从而导致胞质分裂和趋化性缺陷。通过使用未极化的、经拉春库林处理的细胞,我们表明Ras的严格调控对于梯度感知很重要。总之,我们的研究结果表明Ras是细胞罗盘的一部分,并且RasGAP介导的Ras活性调节影响定向感知。

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