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Functional interaction of mammalian target of rapamycin complexes in regulating mammalian cell size and cell cycle

机译:雷帕霉素复合物哺乳动物靶标在调节哺乳动物细胞大小和细胞周期中的功能相互作用

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摘要

Dysregulation of the mammalian target of rapamycin (mTOR) kinase pathway is centrally involved in a wide variety of cancers and human genetic diseases. In mammalian cells, mTOR is part of two different kinase complexes: mTORC1 composed of mTOR, raptor and mLST8, and mTORC2 containing mTOR, rictor, sin1 and mLST8. Whereas, mTORC1 is known to be a pivotal regulator of cell size and cell cycle control, the question whether the recently discovered mTORC2 complex is involved in these processes remains elusive. We report here that the mTORC1-mediated consequences on cell cycle and cell size are separable and do not involve effects on mTORC2 activity. However, we show that mTORC2 itself is a potent regulator of mammalian cell size and cell cycle via a mechanism involving the Akt/TSC2/Rheb cascade. Our data are of relevance for the understanding of the molecular development of the many human diseases caused by deregulation of upstream and downstream effectors of mTOR.
机译:雷帕霉素(mTOR)激酶途径的哺乳动物靶标的失调主要参与多种癌症和人类遗传疾病。在哺乳动物细胞中,mTOR是两种不同激酶复合物的一部分:由mTOR,猛禽和mLST8组成的mTORC1,以及包含mTOR,rictor,sin1和mLST8的mTORC2。尽管已知mTORC1是细胞大小和细胞周期控制的关键调节剂,但最近发现的mTORC2复合物是否参与这些过程的问题仍然不清楚。我们在这里报告,mTORC1介导的细胞周期和细胞大小的后果是可分离的,并且不涉及对mTORC2活性的影响。但是,我们通过涉及Akt / TSC2 / Rheb级联的机制表明,mTORC2本身是哺乳动物细胞大小和细胞周期的有效调节剂。我们的数据对于理解由mTOR上游和下游效应子的失控引起的许多人类疾病的分子发育具有重要意义。

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