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Regulation of ROCK Activity in Cancer

机译:ROCK在癌症中的活性调节

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摘要

Cancer-associated changes in cellular behavior, such as modified cell-cell contact, increased migratory potential, and generation of cellular force, all require alteration of the cytoskeleton. Two homologous mammalian serine/threonine kinases, Rho-associated protein kinases (ROCK I and II), are key regulators of the actin cytoskeleton acting downstream of the small GTPase Rho. ROCK is associated with cancer progression, and ROCK protein expression is elevated in several types of cancer. ROCKs exist in a closed, inactive conformation under quiescent conditions, which is changed to an open, active conformation by the direct binding of guanosine triphosphate (GTP)–loaded Rho. In recent years, a number of ROCK isoform-specific binding partners have been found to modulate the kinase activity through direct interactions with the catalytic domain or via altered cellular localization of the kinases. Thus, these findings demonstrate additional modes to regulate ROCK activity. This review describes the molecular mechanisms of ROCK activity regulation in cancer, with emphasis on ROCK isoform-specific regulation and interaction partners, and discusses the potential of ROCKs as therapeutic targets in cancer.
机译:癌症相关的细胞行为变化,例如修饰的细胞接触,迁移潜能的增加以及细胞力的产生,都需要改变细胞骨架。 Rho相关蛋白激酶(ROCK I和II)是两种同源的哺乳动物丝氨酸/苏氨酸激酶,是在小GTPase Rho下游起作用的肌动蛋白细胞骨架的关键调节因子。 ROCK与癌症进展相关,在几种类型的癌症中,ROCK蛋白表达均升高。岩石在静止条件下以封闭,无活性的构型存在,通过鸟苷三磷酸(GTP)负载的Rho的直接结合,岩石变为开放,有活性的构型。近年来,已经发现许多ROCK同工型特异性结合伴侣通过与催化结构域的直接相互作用或通过改变激酶的细胞定位来调节激酶活性。因此,这些发现证明了调节ROCK活性的其他模式。这篇综述描述了ROCK活性调节在癌症中的分子机制,重点是ROCK同工型特异性调节和相互作用伙伴,并讨论了ROCKs作为癌症治疗靶标的潜力。

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