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Leucine-sensing mechanism of leucyl-tRNA synthetase 1 for mTORC1 activation

机译:白氨酰-TRNA合成酶1用于MTORC1活化的亮氨酸感测机理

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摘要

Leucyl-tRNA synthetase 1 (LARS1) mediates activation of leucine-dependent mechanistic target of rapamycin complex 1 (mTORC1) as well as ligation of leucine to its cognate tRNAs, yet its mechanism of leucine sensing is poorly understood. Here we describe leucine binding-induced conformational changes of LARS1. We determine different crystal structures of LARS1 complexed with leucine, ATP, and a reaction intermediate analog, leucyl-sulfamoyl-adenylate (Leu-AMS), and find two distinct functional states of LARS1 for mTORC1 activation. Upon leucine binding to the synthetic site, H251 and R517 in the connective polypeptide and 50 FPYPY 54 in the catalytic domain change the hydrogen bond network, leading to conformational change in the C-terminal domain, correlating with RagD association. Leucine binding to LARS1 is increased in the presence of ATP, further augmenting leucine-dependent interaction of LARS1 and RagD. Thus, this work unveils the structural basis for leucine-dependent long-range communication between the catalytic and RagD-binding domains of LARS1 for mTORC1 activation.
机译:脱氨酰-TRNA合成酶1(LARS1)介导雷帕霉素络合物1(MTORC1)的亮氨酸依赖机械靶的活化以及亮氨酸与其同源TRNA的连接,但其亮氨酸感测的机制尚不清楚。在这里,我们描述了Lars1的亮氨酸结合诱导的构象变化。我们确定用亮氨酸,ATP和反应中间体模拟,白胶 - 磺酰甘油 - 腺苷酸(Leu-AMS)的不同晶体结构,并找到MTORC1活化的两种不同的LARS1功能状态。在亮氨酸结合到合成部位,H251和R517在结缔置多肽中的H251和R517在催化结构域中的50个Fpypy 54改变氢键网络,导致C末端结构域的构象变化,与RAGD结合相关。在ATP的存在下,亮氨酸与Lars1的结合增加,进一步增强Lars1和RAGD的亮氨酸依赖性相互作用。因此,该作品推出了用于MTORC1活化的LARS1的催化和RAG结合结构域之间的亮氨酸依赖性远程通信的结构基础。

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