pyroxd1介导的人类tRNA连接酶复合物抗氧化失活的机制基础

Luuk Loeff, Alena Kroupova, Igor Asanović, Franziska M. Boneberg, Moritz M. Pfleiderer, Luca Riermeier, Alexander Leitner, Andrè Ferdigg, Fabian Ackle, Javier Martinez, Martin Jinek
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引用次数: 0

摘要

后生动物tRNA连接酶复合物(tRNA- lc)在tRNA生物发生和未折叠蛋白反应中起重要作用。它的催化亚基RTCB含有一个保守的活性位点半胱氨酸,易受金属离子诱导的氧化失活。含黄素氧化还原酶PYROXD1以NAD(P) h依赖的方式保留了人tRNA-LC的活性,但其保护机制尚不清楚。本文报道了人RTCB - PYROXD1复合物的低温电镜结构,揭示了PYROXD1通过其羧基末端尾部直接与RTCB的催化中心相互作用。NAD(P)H结合和FAD还原变构控制了PYROXD1活性和RTCB的募集,而PYROXD1的再氧化使RTCB得以定时释放。PYROXD1相互作用与酶切酶介导的RTCB鸟苷化相互排斥,鸟苷化的RTCB本质上是免于氧化失活的。总之,这些发现为PYROXD1在有氧条件下维持tRNA-LC活性的保护功能提供了一个机制框架。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Mechanistic basis for PYROXD1-mediated protection of the human tRNA ligase complex against oxidative inactivation

Mechanistic basis for PYROXD1-mediated protection of the human tRNA ligase complex against oxidative inactivation

The metazoan tRNA ligase complex (tRNA-LC) has essential roles in tRNA biogenesis and unfolded protein response. Its catalytic subunit RTCB contains a conserved active-site cysteine that is susceptible to metal ion-induced oxidative inactivation. The flavin-containing oxidoreductase PYROXD1 preserves the activity of human tRNA-LC in a NAD(P)H-dependent manner, but its protective mechanism remains elusive. Here, we report a cryogenic electron microscopic structure of the human RTCB–PYROXD1 complex, revealing that PYROXD1 directly interacts with the catalytic center of RTCB through its carboxy-terminal tail. NAD(P)H binding and FAD reduction allosterically control PYROXD1 activity and RTCB recruitment, while reoxidation of PYROXD1 enables timed release of RTCB. PYROXD1 interaction is mutually exclusive with Archease-mediated RTCB guanylylation, and guanylylated RTCB is intrinsically protected from oxidative inactivation. Together, these findings provide a mechanistic framework for the protective function of PYROXD1 that maintains the activity of the tRNA-LC under aerobic conditions.

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