首页> 外文期刊>The Journal of biological chemistry >Phosphatidic Acid Activates Mammalian Target of Rapamycin Complex 1 (mTORC1) Kinase by Displacing FK506 Binding Protein 38 (FKBP38) and Exerting an Allosteric Effect
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Phosphatidic Acid Activates Mammalian Target of Rapamycin Complex 1 (mTORC1) Kinase by Displacing FK506 Binding Protein 38 (FKBP38) and Exerting an Allosteric Effect

机译:磷脂酸通过置换FK506结合蛋白38(FKBP38)来激活哺乳动物催乳素络合物1(MTORC1)激酶并施加变构效果

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Phosphatidic acid (PA) is a critical mediator of mitogenic activation of mammalian target of rapamycin complex 1 (mTORC1) signaling, a master regulator of mammalian cell growth and proliferation. The mechanism by which PA activates mTORC1 signaling has remained unknown. Here, we report that PA selectively stimulates mTORC1 but not mTORC2 kinase activity in cells and in vitro. Furthermore, we show that PA competes with the mTORC1 inhibitor, FK506 binding protein 38 (FKBP38), for mTOR binding at a site encompassing the rapamycin-FKBP12 binding domain. This leads to PA antagonizing FKBP38 inhibition of mTORC1 kinase activity in vitro and rescuing mTORC1 signaling from FKBP38 in cells. Phospholipase D 1, a PA-generating enzyme that is an established upstream regulator of mTORC1, is found to negatively affect mTOR-FKBP38 interaction, confirming the role of endogenous PA in this regulation. Interestingly, removal of FKBP38 alone is insufficient to activate mTORC1 kinase and signaling, which require PA even when the FKBP38 level is drastically reduced by RNAi. In conclusion, we propose a dual mechanism for PA activation of mTORC1: PA displaces FKBP38 from mTOR and allosterically stimulates the catalytic activity of mTORC1.
机译:磷脂酸(PA)是哺乳动物催化剂催化剂催化剂的临床活化的临界介质,其哺乳动物络合物1(MTORC1)信号传导,哺乳动物细胞生长和增殖的母系调节剂。 PA激活MTORC1信令的机制仍然是未知的。在这里,我们认为PA选择性地刺激MTORC1但不是细胞中的MTORC2激酶活性和体外。此外,我们表明PA与MTORC1抑制剂FK506结合蛋白38(FKBP38)竞争,用于在包含雷帕霉素-FKBP12结合结构域的位点的MTOR结合。这导致Pa拮抗FKBP38在体外抑制MTORC1激酶活性和从细胞中的FKBP38拯救MTORC1信号传导。磷脂酶D 1,作为MTORC1的已建立的上游调节剂的PA产生酶,发现对MTOR-FKBP38相互作用产生负面影响,确认内源PA在该调节中的作用。有趣的是,单独除去FKBP38不足以激活MTORC1激酶和信令,即使通过RNAi大大降低FKBP38水平,即使在FKBP38水平急剧下降。总之,我们提出了MTORC1的PA激活的双重机制:PA移位来自MTOR的FKBP38,并构想刺激MTORC1的催化活性。

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