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The metastasis suppressor Nm23 as a modulator of Ras/ERK signaling

机译:转移抑制因子Nm23作为Ras / ERK信号的调节剂

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摘要

NM23-H1 (also known as NME1) was the first identified metastasis suppressor, which displays a nucleoside diphosphate kinase (NDPK) and histidine protein kinase activity. NDPKs are linked to many processes, such as cell migration, proliferation, differentiation, but the exact mechanism whereby NM23-H1 inhibits the metastatic potential of cancer cells remains elusive. However, some recent data suggest that NM23-H1 may exert its anti-metastatic effect by blocking Ras/ERK signaling. In mammalian cell lines NDPK-mediated attenuation of Ras/ERK signaling occurs through phosphorylation (thus inactivation) of KSR (kinase suppressor of Ras) scaffolds. In this review I summarize our knowledge about KSR’s function and its regulation in mammals and in C. elegans. Genetic studies in the nematode contributed substantially to our understanding of the function and regulation of the Ras pathway (i.e. KSR’s discovery is also linked to the nematode). Components of the RTK/Ras/ERK pathway seem to be highly conserved between mammals and worms. NDK-1, the worm homolog of NM23-H1 affects Ras/MAPK signaling at the level of KSRs, and a functional interaction between NDK-1/NDPK and KSRs was first demonstrated in the worm in vivo. However, NDK-1 is a factor, which is necessary for proper MAPK activation, thus it activates rather than suppresses Ras/MAPK signaling in the worm. The contradiction between results in mammalian cell lines and in the worm regarding NDPKs’ effect exerted on the outcome of Ras signaling might be resolved, if we better understand the function, structure and regulation of KSR scaffolds.
机译:NM23-H1(也称为NME1)是第一个鉴定出的转移抑制因子,它具有核苷二磷酸激酶(NDPK)和组氨酸蛋白激酶活性。 NDPKs与许多过程有关,例如细胞迁移,增殖,分化,但是NM23-H1抑制癌细胞转移潜能的确切机制仍然不清楚。但是,最近的一些数据表明,NM23-H1可能通过阻断Ras / ERK信号传导发挥其抗转移作用。在哺乳动物细胞系中,NDPK介导的Ras / ERK信号传导衰减通过KSR(Ras激酶抑制剂)支架的磷酸化(因此失活)发生。在这篇评论中,我总结了我们对KSR的功能及其在哺乳动物和秀丽隐杆线虫中的调控的了解。线虫的遗传研究大大有助于我们对Ras途径的功能和调控的理解(即KSR的发现也与线虫有关)。 RTK / Ras / ERK途径的成分在哺乳动物和蠕虫之间似乎是高度保守的。 NDK-1是NM23-H1的蠕虫同源物,它在KSR的水平上影响Ras / MAPK信号传导,NDK-1 / NDPK和KSR之间的功能相互作用首先在体内被证实。但是,NDK-1是正确激活MAPK所必需的一个因素,因此它激活而不是抑制蠕虫中的Ras / MAPK信号传导。如果我们更好地了解KSR支架的功能,结构和调控,则可以解决哺乳动物细胞系和蠕虫中关于NDPKs对Ras信号转导的作用所产生的矛盾。

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