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Mutationally activated Rho GTPases in cancer

机译:突变激活的Rho GTPases在癌症中

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摘要

The Rho family of GTPases (members of the Ras superfam-ily) are best known for their roles in regulating cytoskeletal dynamics. It is also well established that misregulation of Rho proteins contributes to tumorigenesis and metastasis. Unlike Ras proteins, which are frequently mutated in cancer (around 30%), Rho proteins themselves are generally not found to be mutated in cancer. Rather, misregulation of Rho activity in cancer was thought to occur by overexpression of these proteins or by misregulation of molecules that control Rho activity, such as activation or overexpression of GEFs and inactivation or loss of GAPs or GDIs. Recent studies, enabled by next-generation tumor exome sequencing, report activating point mutations in Rho GTPases as driver mutations in melanoma, as well as breast, and head and neck cancers. The Rac1(P29L) mutation identified in these tumor studies was previously identified by our lab as an activating Rac mutation in C. elegans neuronal development, highlighting the conserved nature of this mutation. Furthermore, this finding supports the relevance of studying Rho GTPases in model organisms such as C. elegans to study the mechanisms that underlie carcinogenesis. This review will describe the recent findings that report activating Rho mutations in various cancer types, moving Rho GTPases from molecules misregulated in cancer to mutagenic targets that drive tumorigenesis.
机译:GTPases的Rho家族(Ras家族的成员)以其在调节细胞骨架动力学中的作用而闻名。众所周知,Rho蛋白的失调会导致肿瘤的发生和转移。与经常在癌症中发生突变(约30%)的Ras蛋白不同,Rho蛋白本身在癌症中通常不会发生突变。相反,据认为,癌症中Rho活性的失调是由于这些蛋白质的过表达或控制Rho活性的分子的失调而发生的,例如GEF的激活或过表达以及GAP或GDI的失活或丢失。新一代肿瘤外显子组测序技术的最新研究表明,Rho GTPases中的激活点突变是黑色素瘤以及乳腺癌和头颈癌的驱动突变。在这些肿瘤研究中鉴定出的Rac1(P29L)突变先前被我们的实验室鉴定为秀丽隐杆线虫神经元发育中的激活性Rac突变,突出了该突变的保守性质。此外,这一发现支持在模型生物(例如秀丽隐杆线虫)中研究Rho GTPases以研究致癌机理的相关性。这篇综述将描述最近的发现,这些发现报告了在各种癌症类型中激活Rho突变,将Rho GTPases从癌症中失调的分子转移到了驱动肿瘤发生的诱变靶标上。

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