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Rac1的靶向作用和激活由交换因子β-Pix介导。

Targeting and activation of Rac1 are mediated by the exchange factor beta-Pix.

作者信息

ten Klooster Jean Paul, Jaffer Zahara M, Chernoff Jonathan, Hordijk Peter L

机构信息

Sanquin Research and Landsteiner Laboratory, Academic Medical Center, University of Amsterdam, 1066 CX Amsterdam, Netherlands.

出版信息

J Cell Biol. 2006 Feb 27;172(5):759-69. doi: 10.1083/jcb.200509096. Epub 2006 Feb 21.

Abstract

Rho guanosine triphosphatases (GTPases) are critical regulators of cytoskeletal dynamics and control complex functions such as cell adhesion, spreading, migration, and cell division. It is generally accepted that localized GTPase activation is required for the proper initiation of downstream signaling events, although the molecular mechanisms that control targeting of Rho GTPases are unknown. In this study, we show that the Rho GTPase Rac1, via a proline stretch in its COOH terminus, binds directly to the SH3 domain of the Cdc42/Rac activator beta-Pix (p21-activated kinase [Pak]-interacting exchange factor). The interaction with beta-Pix is nucleotide independent and is necessary and sufficient for Rac1 recruitment to membrane ruffles and to focal adhesions. In addition, the Rac1-beta-Pix interaction is required for Rac1 activation by beta-Pix as well as for Rac1-mediated spreading. Finally, using cells deficient for the beta-Pix-binding kinase Pak1, we show that Pak1 regulates the Rac1-beta-Pix interaction and controls cell spreading and adhesion-induced Rac1 activation. These data provide a model for the intracellular targeting and localized activation of Rac1 through its exchange factor beta-Pix.

摘要

Rho鸟苷三磷酸酶(GTP酶)是细胞骨架动力学的关键调节因子,可控制细胞黏附、铺展、迁移和细胞分裂等复杂功能。尽管控制Rho GTP酶靶向定位的分子机制尚不清楚,但普遍认为下游信号事件的正确启动需要局部GTP酶激活。在本研究中,我们发现Rho GTP酶Rac1通过其COOH末端的一段脯氨酸序列,直接与Cdc42/Rac激活因子β-Pix(p21激活激酶[Pak]相互作用交换因子)的SH3结构域结合。与β-Pix的相互作用不依赖于核苷酸,对于Rac1募集到膜皱襞和粘着斑是必要且充分的。此外,Rac1-β-Pix相互作用对于β-Pix激活Rac1以及Rac1介导的铺展也是必需的。最后,利用缺乏β-Pix结合激酶Pak1的细胞,我们发现Pak1调节Rac1-β-Pix相互作用,并控制细胞铺展和黏附诱导的Rac1激活。这些数据提供了一个通过其交换因子β-Pix对Rac1进行细胞内靶向定位和局部激活的模型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d0a0/2063707/48a204807d1b/jcb1720759f01.jpg

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