The mTOR signaling pathway in cardiac aging.

Dao-Fu Dai, Ping Kang, Hua Bai
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Abstract

The mammalian target of rapamycin (mTOR) is one of the most important signaling pathways that regulate nutrient sensing, cell growth, metabolism, and aging. The mTOR pathway, particularly mTOR complex 1 (mTORC1), has been shown to control aging, lifespan, and healthspan through the regulation of protein synthesis, autophagy, mitochondrial function, and metabolic health. The mTOR pathway also plays critical roles in the heart, from cardiac development, growth and maturation, and maintenance of cardiac homeostasis. Hyperactivation of mTORC1 signaling is well documented in aging and many age-related pathologies, including age-related cardiac dysfunction and heart failure. Suppression of mTORC1 by calorie restriction or rapamycin not only extends lifespan but also restores youthful phenotypes in the heart. In this article, we review model organisms of cardiac aging and highlight recent advances in the impact of the mTORC1 pathway on organismal and cardiac aging, particularly in Drosophila and mice. We focus on the downstream signaling pathways S6 kinase and 4EBP1, which regulates protein synthesis, as well as ULK1 and its related pathway that regulates autophagy. The interaction with mTOR complex 2 (mTORC2) and its potential role in cardiac aging are also discussed.

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mTOR信号通路在心脏衰老中的作用。
哺乳动物雷帕霉素靶蛋白(mTOR)是调控营养感知、细胞生长、代谢和衰老的重要信号通路之一。mTOR通路,特别是mTOR复合物1 (mTORC1),已被证明通过调节蛋白质合成、自噬、线粒体功能和代谢健康来控制衰老、寿命和健康。mTOR通路在心脏的发育、生长和成熟以及维持心脏稳态等方面也起着关键作用。mTORC1信号的过度激活在衰老和许多与年龄相关的病理中得到了充分的证明,包括与年龄相关的心功能障碍和心力衰竭。通过热量限制或雷帕霉素抑制mTORC1不仅可以延长寿命,还可以恢复心脏的年轻表型。在本文中,我们回顾了心脏衰老的模式生物,并重点介绍了mTORC1通路对机体和心脏衰老的影响的最新进展,特别是在果蝇和小鼠中。我们重点研究了调控蛋白合成的下游信号通路S6激酶和4EBP1,以及调控自噬的ULK1及其相关通路。并讨论了与mTOR复合物2 (mTORC2)的相互作用及其在心脏衰老中的潜在作用。
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