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mTOR 通过 mTORC1 控制胚胎和成年肌发生。

mTOR controls embryonic and adult myogenesis via mTORC1.

机构信息

Biozentrum, University of Basel, CH-4056 Basel, Switzerland.

Biozentrum, University of Basel, CH-4056 Basel, Switzerland

出版信息

Development. 2019 Apr 8;146(7):dev172460. doi: 10.1242/dev.172460.

Abstract

The formation of multi-nucleated muscle fibers from progenitors requires the fine-tuned and coordinated regulation of proliferation, differentiation and fusion, both during development and after injury in the adult. Although some of the key factors that are involved in the different steps are well known, how intracellular signals are coordinated and integrated is largely unknown. Here, we investigated the role of the cell-growth regulator mTOR by eliminating essential components of the mTOR complexes 1 (mTORC1) and 2 (mTORC2) in mouse muscle progenitors. We show that inactivation of mTORC1, but not mTORC2, in developing muscle causes perinatal death. In the adult, mTORC1 deficiency in muscle stem cells greatly impinges on injury-induced muscle regeneration. These phenotypes are because of defects in the proliferation and fusion capacity of the targeted muscle progenitors. However, mTORC1-deficient muscle progenitors partially retain their myogenic function. Hence, our results show that mTORC1 and not mTORC2 is an important regulator of embryonic and adult myogenesis, and they point to alternative pathways that partially compensate for the loss of mTORC1.This article has an associated 'The people behind the papers' interview.

摘要

多细胞核肌纤维由前体细胞形成,这需要在发育过程中和成年后损伤时,对增殖、分化和融合进行精细的、协调的调节。尽管人们已经了解了参与不同步骤的一些关键因素,但细胞内信号如何协调和整合仍知之甚少。在这里,我们通过消除 mTOR 复合物 1(mTORC1)和 2(mTORC2)的必需成分,研究了细胞生长调节剂 mTOR 的作用。我们发现,mTORC1 在发育中的肌肉中的失活,但不是 mTORC2,导致围产期死亡。在成年期,肌肉干细胞中 mTORC1 的缺失极大地影响了损伤诱导的肌肉再生。这些表型是由于靶肌肉前体细胞的增殖和融合能力缺陷所致。然而,mTORC1 缺陷的肌肉前体细胞部分保留了它们的成肌功能。因此,我们的结果表明,mTORC1 而不是 mTORC2 是胚胎和成体肌发生的重要调节剂,它们指出了部分补偿 mTORC1 缺失的替代途径。本文有一个相关的“论文背后的人物”访谈。

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