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PRK2激酶是Rho和Rac GTP酶的潜在效应靶点,并调节肌动蛋白细胞骨架组织。

The PRK2 kinase is a potential effector target of both Rho and Rac GTPases and regulates actin cytoskeletal organization.

作者信息

Vincent S, Settleman J

机构信息

Massachusetts General Hospital Cancer Center and Harvard Medical School, Charlestown 02129, USA.

出版信息

Mol Cell Biol. 1997 Apr;17(4):2247-56. doi: 10.1128/MCB.17.4.2247.

Abstract

The Ras-related Rho family GTPases mediate signal transduction pathways that regulate a variety of cellular processes. Like Ras, the Rho proteins (which include Rho, Rac, and CDC42) interact directly with protein kinases, which are likely to serve as downstream effector targets of the activated GTPase. Activated RhoA has recently been reported to interact directly with several protein kinases, p120 PKN, p150 ROK alpha and -beta, p160 ROCK, and p164 Rho kinase. Here, we describe the purification of a novel Rho-associated kinase, p140, which appears to be the major Rho-associated kinase activity in most tissues. Peptide microsequencing revealed that p140 is probably identical to the previously reported PRK2 kinase, a close relative of PKN. However, unlike the previously described Rho-binding kinases, which are Rho specific, p140 associates with Rac as well as Rho. Moreover, the interaction of p140 with Rho in vitro is nucleotide independent, whereas the interaction with Rac is completely GTP dependent. The association of p140 with either GTPase promotes kinase activity substantially, and expression of a kinase-deficient form of p140 in microinjected fibroblasts disrupts actin stress fibers. These results indicate that p140 may be a shared kinase target of both Rho and Rac GTPases that mediates their effects on rearrangements of the actin cytoskeleton.

摘要

与Ras相关的Rho家族GTP酶介导调节多种细胞过程的信号转导途径。与Ras一样,Rho蛋白(包括Rho、Rac和CDC42)直接与蛋白激酶相互作用,这些蛋白激酶可能作为活化GTP酶的下游效应靶点。最近有报道称,活化的RhoA可直接与几种蛋白激酶相互作用,即p120 PKN、p150 ROKα和-β、p160 ROCK以及p164 Rho激酶。在此,我们描述了一种新型Rho相关激酶p140的纯化过程,它似乎是大多数组织中主要的Rho相关激酶活性成分。肽微测序显示,p140可能与先前报道的PRK2激酶相同,PRK2激酶是PKN的近亲。然而,与先前描述的Rho特异性Rho结合激酶不同,p140不仅与Rho结合,还与Rac结合。此外,p140在体外与Rho的相互作用不依赖核苷酸,而与Rac的相互作用则完全依赖GTP。p140与任何一种GTP酶的结合都会显著促进激酶活性,并且在显微注射的成纤维细胞中表达激酶缺陷型p140会破坏肌动蛋白应力纤维。这些结果表明,p140可能是Rho和Rac GTP酶共同的激酶靶点,介导它们对肌动蛋白细胞骨架重排的影响。

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