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首页> 外文期刊>Biochimica et biophysica acta. Molecular cell research >Aminoacyl-tRNA synthetases and amino acid signaling
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Aminoacyl-tRNA synthetases and amino acid signaling

机译:氨基酰基-TRNA合成酶和氨基酸信号传导

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Aminoacyl-tRNA synthetases (ARSs) are a family of evolutionarily conserved housekeeping enzymes used for protein synthesis that have pivotal roles in the ligation of tRNA with their cognate amino acids. Recent advances in the structural and functional studies of ARSs have revealed many previously unknown biological functions beyond the classical catalytic roles. Sensing the sufficiency of intracellular nutrients such as amino acids, ATP, and fatty acids is a crucial aspect for every living organism, and it is closely connected to the regulation of diverse cellular physiologies. Notably, among ARSs, leucyl-tRNA synthetase 1 (LARS1) has been identified to perform specifically as a leucine sensor upstream of the amino acid-sensing pathway and thus participates in the coordinated control of protein synthesis and autophagy for cell growth. In addition to LARS1, other types of ARSs are also likely involved in the sensing and signaling of their cognate amino acids inside cells. Collectively, this review focuses on the mechanisms of ARSs interacting within amino acid signaling and proposes the possible role of ARSs as general intracellular amino acid sensors.
机译:氨基酰基-TRNA合成酶(ARS)是用于蛋白质合成的进化保守的内脏酶系列,其具有与其同源氨基酸的TRNA结扎的枢转作用。 ARSS结构和功能研究的最新进展揭示了许多以前未知的生物学功能,超出了古典催化作用。感知细胞内营养素如氨基酸,ATP和脂肪酸是每种生物体的关键方面,它与各种细胞生理的调节密切相关。值得注意的是,在ARS中,已经鉴定了白氨酰-TRNA合成酶1(LARS1),特别是作为氨基酸传感途径上游的亮氨酸传感器进行,从而参与蛋白质合成和用于细胞生长的自噬的协调控制。除了LARS1之外,还可能参与其同源氨基酸内细胞内的感测和信号的其他类型的ARS。共同认为,本综述侧重于氨基酸信号传导中相互作用的ARSS的机制,并提出ARSS作为通用细胞内氨基酸传感器的可能作用。

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