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首页> 外文期刊>The journal of clinical investigation >MTORC1 regulates cardiac function and myocyte survival through 4E-BP1 inhibition in mice
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MTORC1 regulates cardiac function and myocyte survival through 4E-BP1 inhibition in mice

机译:MTORC1通过抑制小鼠的4E-BP1调节心脏功能和心肌细胞存活

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Mechanistic target of rapamycin (MTOR) plays a critical role in the regulation of cell growth and in the response to energy state changes. Drugs inhibiting MTOR are increasingly used in antineoplastic therapies. Myocardial MTOR activity changes during hypertrophy and heart failure (HF). However, whether MTOR exerts a positive or a negative effect on myocardial function remains to be fully elucidated. Here, we show that ablation of Mtor in the adult mouse myocardium results in a fatal, dilated cardiomyopathy that is characterized by apoptosis, autophagy, altered mitochondrial structure, and accumulation of eukaryotic translation initiation factor 4E–binding protein 1 (4E-BP1). 4E-BP1 is an MTOR-containing multiprotein complex-1 (MTORC1) substrate that inhibits translation initiation. When subjected to pressure overload, Mtor -ablated mice demonstrated an impaired hypertrophic response and accelerated HF progression. When the gene encoding 4E-BP1 was ablated together with Mtor , marked improvements were observed in apoptosis, heart function, and survival. Our results demonstrate a role for the MTORC1 signaling network in the myocardial response to stress. In particular, they highlight the role of 4E-BP1 in regulating cardiomyocyte viability and in HF. Because the effects of reduced MTOR activity were mediated through increased 4E-BP1 inhibitory activity, blunting this mechanism may represent a novel therapeutic strategy for improving cardiac function in clinical HF.
机译:雷帕霉素的机械靶标(MTOR)在调节细胞生长和对能量状态变化的响应中起关键作用。抑制MTOR的药物越来越多地用于抗肿瘤治疗中。心肌MTOR活性在肥大和心力衰竭(HF)期间发生变化。但是,MTOR对心肌功能产生正向还是负向的作用仍有待充分阐明。在这里,我们显示成年小鼠心肌Mtor的消融导致致命的扩张型心肌病,其特征是凋亡,自噬,线粒体结构改变和真核翻译起始因子4E结合蛋白1(4E-BP1)的积累。 4E-BP1是一种含有MTOR的多蛋白复合物1(MTORC1)底物,可抑制翻译起始。承受压力超负荷时,Mtor消融小鼠表现出肥大反应受损和HF进程加速。当编码4E-BP1的基因与Mtor一起消融时,在凋亡,心脏功能和存活率方面观察到明显的改善。我们的结果证明了MTORC1信号网络在心肌对压力的反应中的作用。特别是,它们突出了4E-BP1在调节心肌细胞活力和HF中的作用。由于降低的MTOR活性的影响是通过增加4E-BP1抑制活性来介导的,因此减弱这种机制可能代表一种改善临床HF中心功能的新型治疗策略。

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