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

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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Abstract

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.

Abstract Image

pyroxd1介导的人类tRNA连接酶复合物抗氧化失活的机制基础
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。
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