Multifaceted role of mTOR (mammalian target of rapamycin) signaling pathway in human health and disease

PI3K/AKT/mTOR通路 mTORC2型 mTORC1型 RPTOR公司 自噬 雷帕霉素的作用靶点 生物 细胞生物学 P70-S6激酶1 TFEB 蛋白激酶B 信号转导 核糖体生物发生 核糖体s6激酶 激酶 癌症研究 生物化学 核糖体 细胞凋亡 核糖核酸 基因
作者
Vivek Panwar,Aishwarya Singh,Madan Lal Brahma Bhatt,Rajiv K. Tonk,Shavkatjon Azizov,Ali Raza,Shinjinee Sengupta,Deepak Kumar,Manoj Garg
出处
期刊:Signal Transduction and Targeted Therapy [Springer Nature]
卷期号:8 (1) 被引量:35
标识
DOI:10.1038/s41392-023-01608-z
摘要

The mammalian target of rapamycin (mTOR) is a protein kinase that controls cellular metabolism, catabolism, immune responses, autophagy, survival, proliferation, and migration, to maintain cellular homeostasis. The mTOR signaling cascade consists of two distinct multi-subunit complexes named mTOR complex 1/2 (mTORC1/2). mTOR catalyzes the phosphorylation of several critical proteins like AKT, protein kinase C, insulin growth factor receptor (IGF-1R), 4E binding protein 1 (4E-BP1), ribosomal protein S6 kinase (S6K), transcription factor EB (TFEB), sterol-responsive element-binding proteins (SREBPs), Lipin-1, and Unc-51-like autophagy-activating kinases. mTOR signaling plays a central role in regulating translation, lipid synthesis, nucleotide synthesis, biogenesis of lysosomes, nutrient sensing, and growth factor signaling. The emerging pieces of evidence have revealed that the constitutive activation of the mTOR pathway due to mutations/amplification/deletion in either mTOR and its complexes (mTORC1 and mTORC2) or upstream targets is responsible for aging, neurological diseases, and human malignancies. Here, we provide the detailed structure of mTOR, its complexes, and the comprehensive role of upstream regulators, as well as downstream effectors of mTOR signaling cascades in the metabolism, biogenesis of biomolecules, immune responses, and autophagy. Additionally, we summarize the potential of long noncoding RNAs (lncRNAs) as an important modulator of mTOR signaling. Importantly, we have highlighted the potential of mTOR signaling in aging, neurological disorders, human cancers, cancer stem cells, and drug resistance. Here, we discuss the developments for the therapeutic targeting of mTOR signaling with improved anticancer efficacy for the benefit of cancer patients in clinics.
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