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首页> 外文期刊>BMC Cancer >Direct physical interaction of active Ras with mSIN1 regulates mTORC2 signaling
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Direct physical interaction of active Ras with mSIN1 regulates mTORC2 signaling

机译:具有MSIN1的活性RA的直接物理交互调节MTORC2信令

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BACKGROUND:The mechanistic (or mammalian) target of rapamycin (mTOR), a Ser/Thr kinase, associates with different subunits forming two functionally distinct complexes, mTORC1 and mTORC2, regulating a diverse set of cellular functions in response to growth factors, cellular energy levels, and nutrients. The mechanisms regulating mTORC1 activity are well characterized; regulation of mTORC2 activity, however, remains obscure. While studies conducted in Dictyostelium suggest a possible role of Ras protein as a potential upstream regulator of mTORC2, definitive studies delineating the underlying molecular mechanisms, particularly in mammalian cells, are still lacking.METHODS:Protein levels were measured by Western blotting and kinase activity of mTORC2 was analyzed by in vitro kinase assay. In situ Proximity ligation assay (PLA) and co-immunoprecipitation assay was performed to detect protein-protein interaction. Protein localization was investigated by immunofluorescence and subcellular fractionation while cellular function of mTORC2 was assessed by assaying extent of cell migration and invasion.RESULTS:Here, we present experimental evidence in support of the role of Ras activation as an upstream regulatory switch governing mTORC2 signaling in mammalian cancer cells. We report that active Ras through its interaction with mSIN1 accounts for mTORC2 activation, while disruption of this interaction by genetic means or via peptide-based competitive hindrance, impedes mTORC2 signaling.CONCLUSIONS:Our study defines the regulatory role played by Ras during mTORC2 signaling in mammalian cells and highlights the importance of Ras-mSIN1 interaction in the assembly of functionally intact mTORC2.
机译:背景:雷帕霉素(mTOR)的机械(或哺乳动物)靶标,SER / THR激酶,具有不同亚基的缔合物形成两个功能性不同的复合物,MTORC1和MTORC2,用于响应于生长因子,细胞能量来调节多样的蜂窝功能水平和营养素。调节MTORC1活性的机制很好地表征;然而,MTORC2活性的调节仍然模糊不清。虽然在Dictyostelium进行的研究表明RAS蛋白作为MTORC2的潜在上游调节剂的可能作用,但仍然缺乏划清杂于哺乳动物细胞的潜在分子机制的明确研究。方法:通过蛋白质印迹和激酶活性测量蛋白质水平通过体外激酶测定分析MTORC2。在原位邻近连接测定(PLA)和共分免沉淀测定以检测蛋白质 - 蛋白质相互作用。通过免疫荧光和亚细胞分馏来研究蛋白质定位,而MTORC2的细胞功能是通过测定细胞迁移和入侵的程度来评估。结果:在这里,我们提出了支持RAS激活作为管理MTORC2信号的上游调节器开关的作用的实验证据哺乳动物癌细胞。我们通过与MSIN1的互动来报告活动RAS对MTORC2激活的账户,同时通过遗传方式或通过基于肽的竞争性障碍来破坏这种相互作用,阻碍MTORC2信令。结论:我们的研究定义了在MTORC2信令期间的RAS扮演的监管角色哺乳动物细胞并突出了在功能完整MTORC2组装中RAS-MSIN1相互作用的重要性。

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