tRNA作为大分子转录加工复合物的装配伴侣

Julia Bartuli, Stefan Jungwirth, Manisha Dixit, Takumi Okuda, Johannes Patrick Zimmermann, Matthias Erlacher, Tao Pan, Asisa Volz, Alexander Hüttenhofer, Bettina Warscheid, Claudia Höbartner, Clemens Grimm, Utz Fischer
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引用次数: 0

摘要

转移rna (Transfer rna, trna)因其在翻译中的作用而被广泛认识。在这里,我们描述了tRNA作为组装伴侣的先前未被识别的功能。在痘病毒感染期间,缺乏抗密码子mcm5s2U34修饰的tRNAGln/Arg被特异性地从细胞tRNA池中分离出来,以促进多亚基痘病毒RNA聚合酶复合物(vRNAP)的形成。装配中间体的低温电子显微镜分析说明了tRNAGln/Arg如何协调转录和mRNA加工因子向vRNAP的募集,并控制向起始前复合物的过渡。这是通过诱导拟合机制实现的,该机制将反密码子碱基G36内化到反密码子干中,创建非规范tRNA结构并选择已定义的tRNA修饰模式。tRNA作为装配伴侣的作用扩展到具有类似vRNAP的致病性m痘病毒。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

tRNA as an assembly chaperone for a macromolecular transcription-processing complex

tRNA as an assembly chaperone for a macromolecular transcription-processing complex

Transfer RNAs (tRNAs) are widely recognized for their role in translation. Here, we describe a previously unidentified function of tRNA as an assembly chaperone. During poxviral infection, tRNAGln/Arg lacking the anticodon mcm5s2U34 modification is specifically sequestered from the cellular tRNA pool to promote formation of a multisubunit poxviral RNA polymerase complex (vRNAP). Cryo-electron microscopy analysis of assembly intermediates illustrates how tRNAGln/Arg orchestrates the recruitment of transcription and mRNA processing factors to vRNAP where it controls the transition to the preinitiation complex. This is achieved by an induced fit mechanism that internalizes anticodon base G36 into the anticodon stem, creating a noncanonical tRNA structure and selecting a defined tRNA modification pattern. The role of tRNA as an assembly chaperone extends to the pathogenic Mpox virus, which features a similar vRNAP.

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