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Rho GTP酶膜结合、激活及在活性模式形成中保留的生化机制。

The biochemical mechanism of Rho GTPase membrane binding, activation and retention in activity patterning.

作者信息

Armstrong Michael C, Weiß Yannic R, Hoachlander-Hobby Lila E, Roy Ankit A, Visco Ilaria, Moe Alison, Golding Adriana E, Hansen Scott D, Bement William M, Bieling Peter

机构信息

Department of Systemic Cell Biology, Max Planck Institute of Molecular Physiology, Dortmund, Germany.

Graduate Program in Cellular and Molecular Biology, University of Wisconsin-Madison, Madison, WI, USA.

出版信息

EMBO J. 2025 May;44(9):2620-2657. doi: 10.1038/s44318-025-00418-z. Epub 2025 Mar 31.

Abstract

Rho GTPases form plasma membrane-associated patterns that control the cytoskeleton during cell division, morphogenesis, migration, and wound repair. Their patterning involves transitions between inactive cytosolic and active membrane-bound states, regulated by guanine nucleotide exchange factors (GEFs), GTPase-activating proteins (GAPs), and guanine nucleotide dissociation inhibitors (GDIs). However, the relationships between these transitions and role of different regulators remain unclear. We developed a novel reconstitution approach to study Rho GTPase patterning with all major GTPase regulators in a biochemically defined system. We show that Rho GTPase dissociation from RhoGDI is rate-limiting for its membrane association. Rho GTPase activation occurs after membrane insertion, which is unaffected by GEF activity. Once activated, Rho GTPases are retained at the membrane through effector interactions, essential for their enrichment at activation sites. Thus, high cytosolic levels of RhoGDI-bound GTPases ensure a constant supply of inactive GTPases for the membrane, where GEF-mediated activation and effector binding stabilize them. These results delineate the route by which Rho GTPase patterns are established and define stage-dependent roles of its regulators.

摘要

Rho GTP酶形成与质膜相关的模式,在细胞分裂、形态发生、迁移和伤口修复过程中控制细胞骨架。它们的模式形成涉及无活性的胞质状态和活性的膜结合状态之间的转变,这由鸟嘌呤核苷酸交换因子(GEFs)、GTP酶激活蛋白(GAPs)和鸟嘌呤核苷酸解离抑制剂(GDIs)调节。然而,这些转变与不同调节因子的作用之间的关系仍不清楚。我们开发了一种新的重组方法,以在生化定义的系统中研究Rho GTP酶与所有主要GTP酶调节因子的模式形成。我们表明,Rho GTP酶从RhoGDI解离对其膜结合具有限速作用。Rho GTP酶的激活发生在膜插入之后,这不受GEF活性的影响。一旦被激活,Rho GTP酶通过效应物相互作用保留在膜上,这对它们在激活位点的富集至关重要。因此,高胞质水平的与RhoGDI结合的GTP酶确保了膜上无活性GTP酶的持续供应,在膜上GEF介导的激活和效应物结合使它们稳定。这些结果描绘了Rho GTP酶模式建立的途径,并定义了其调节因子的阶段依赖性作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4277/12048676/4ad53d1064b8/44318_2025_418_Fig1_HTML.jpg

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