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EPRS是一种关键的mTORC1 - S6K1效应蛋白,可影响小鼠的肥胖程度。

EPRS is a critical mTORC1-S6K1 effector that influences adiposity in mice.

作者信息

Arif Abul, Terenzi Fulvia, Potdar Alka A, Jia Jie, Sacks Jessica, China Arnab, Halawani Dalia, Vasu Kommireddy, Li Xiaoxia, Brown J Mark, Chen Jie, Kozma Sara C, Thomas George, Fox Paul L

机构信息

Department of Cellular and Molecular Medicine, Lerner Research Institute, Cleveland Clinic, Cleveland, Ohio 44195, USA.

F. Widjaja Foundation Inflammatory Bowel and Immunobiology Research Institute, Cedars-Sinai Medical Center, Los Angeles, California 90048, USA.

出版信息

Nature. 2017 Feb 16;542(7641):357-361. doi: 10.1038/nature21380. Epub 2017 Feb 8.

Abstract

Metabolic pathways that contribute to adiposity and ageing are activated by the mammalian target of rapamycin complex 1 (mTORC1) and p70 ribosomal protein S6 kinase 1 (S6K1) axis. However, known mTORC1-S6K1 targets do not account for observed loss-of-function phenotypes, suggesting that there are additional downstream effectors of this pathway. Here we identify glutamyl-prolyl-tRNA synthetase (EPRS) as an mTORC1-S6K1 target that contributes to adiposity and ageing. Phosphorylation of EPRS at Ser999 by mTORC1-S6K1 induces its release from the aminoacyl tRNA multisynthetase complex, which is required for execution of noncanonical functions of EPRS beyond protein synthesis. To investigate the physiological function of EPRS phosphorylation, we generated Eprs knock-in mice bearing phospho-deficient Ser999-to-Ala (S999A) and phospho-mimetic (S999D) mutations. Homozygous S999A mice exhibited low body weight, reduced adipose tissue mass, and increased lifespan, similar to S6K1-deficient mice and mice with adipocyte-specific deficiency of raptor, an mTORC1 constituent. Substitution of the Eprs allele in S6K1-deficient mice normalized body mass and adiposity, indicating that EPRS phosphorylation mediates S6K1-dependent metabolic responses. In adipocytes, insulin stimulated S6K1-dependent EPRS phosphorylation and release from the multisynthetase complex. Interaction screening revealed that phospho-EPRS binds SLC27A1 (that is, fatty acid transport protein 1, FATP1), inducing its translocation to the plasma membrane and long-chain fatty acid uptake. Thus, EPRS and FATP1 are terminal mTORC1-S6K1 axis effectors that are critical for metabolic phenotypes.

摘要

对肥胖和衰老有影响的代谢途径由雷帕霉素复合物1(mTORC1)和p70核糖体蛋白S6激酶1(S6K1)轴激活。然而,已知的mTORC1 - S6K1靶点并不能解释所观察到的功能丧失表型,这表明该途径存在其他下游效应器。在这里,我们确定谷氨酰 - 脯氨酰 - tRNA合成酶(EPRS)是mTORC1 - S6K1的一个靶点,它对肥胖和衰老有影响。mTORC1 - S6K1在丝氨酸999位点对EPRS的磷酸化诱导其从氨酰tRNA多合成酶复合物中释放出来,这是EPRS执行蛋白质合成以外的非经典功能所必需的。为了研究EPRS磷酸化的生理功能,我们构建了携带磷酸化缺陷型丝氨酸999突变为丙氨酸(S999A)和磷酸化模拟型(S999D)突变的Eprs基因敲入小鼠。纯合子S999A小鼠表现出低体重、脂肪组织质量减少和寿命延长,类似于S6K1缺陷小鼠和具有脂肪细胞特异性raptor(mTORC1的一个组成部分)缺陷的小鼠。在S6K1缺陷小鼠中替换Eprs等位基因可使体重和肥胖正常化,表明EPRS磷酸化介导S6K1依赖性代谢反应。在脂肪细胞中,胰岛素刺激S6K1依赖性的EPRS磷酸化和从多合成酶复合物中的释放。相互作用筛选显示,磷酸化的EPRS与SLC27A1(即脂肪酸转运蛋白1,FATP1)结合,诱导其转运到质膜并摄取长链脂肪酸。因此,EPRS和FATP1是mTORC1 - S6K1轴的终效应器,对代谢表型至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5808/5480610/53107af931ad/nihms843061f1.jpg

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