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首页> 外文期刊>Molecular cell >Mitochondrial Division Is Requisite to RAS-Induced Transformation and Targeted by Oncogenic MAPK Pathway Inhibitors
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Mitochondrial Division Is Requisite to RAS-Induced Transformation and Targeted by Oncogenic MAPK Pathway Inhibitors

机译:线粒体分裂是RAS诱导的转化所必需的,并以致癌的MAPK途径抑制剂为靶向

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Mitochondrial division is essential for mitosis and metazoan development, but a mechanistic role in cancer biology remains unknown. Here, we examine the direct effects of oncogenic RAS(G12V)-mediated cellular transformation on the mitochondrial dynamics machinery and observe a positive selection for dynamin-related protein 1 (DRP1), a protein required for mitochondrial network division. Loss of DRP1 prevents RAS(G12V)-induced mitochondrial dysfunction and renders cells resistant to transformation. Conversely, in human tumor cell lines with activating MAPK mutations, inhibition of these signals leads to robust mitochondrial network reprogramming initiated by DRP1 loss resulting in mitochondrial hyper-fusion and increased mitochondrial metabolism. These phenotypes are mechanistically linked by ERK1/2 phosphorylation of DRP1 serine 616; DRP1(S616) phosphorylation is sufficient to phenocopy transformation-induced mitochondrial dysfunction, and DRP1(S616) phosphorylation status dichotomizes BRAF(WT) from BRAF(V600E)-positive lesions. These findings implicate mitochondrial division and DRP1 as crucial regulators of transformation with leverage in chemotherapeutic success.
机译:线粒体分裂对于有丝分裂和后生动物的发育至关重要,但是在癌症生物学中的机械作用仍然未知。在这里,我们检查了致癌性RAS(G12V)介导的细胞转化对线粒体动力学机制的直接影响,并观察到了对动力蛋白相关蛋白1(DRP1)(一种线粒体网络分裂所需的蛋白)的积极选择。 DRP1的丢失可防止RAS(G12V)诱导的线粒体功能障碍,并使细胞抗转化。相反,在具有激活MAPK突变的人类肿瘤细胞系中,对这些信号的抑制会导致由DRP1丢失引发的强大的线粒体网络重编程,从而导致线粒体过度融合和线粒体代谢增加。这些表型通过DRP1丝氨酸616的ERK1 / 2磷酸化机制连接。 DRP1(S616)磷酸化足以表型转化诱导的线粒体功能障碍,而DRP1(S616)磷酸化状态将BRAF(WT)与BRAF(V600E)阳性病变二分。这些发现暗示线粒体分裂和DRP1是转化成功的关键调节剂,并在化学疗法中取得成功。

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