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人类线粒体中核糖体生物发生与翻译起始的偶联

Coupling of ribosome biogenesis and translation initiation in human mitochondria.

作者信息

Heinrichs Marleen, Finke Anna Franziska, Aibara Shintaro, Krempler Angelique, Boshnakovska Angela, Rehling Peter, Hillen Hauke S, Richter-Dennerlein Ricarda

机构信息

Department of Molecular Biology, University Medical Center Göttingen, Göttingen, Germany.

Cluster of Excellence "Multiscale Bioimaging: from Molecular Machines to Networks of Excitable Cells" (MBExC), University of Göttingen, Göttingen, Germany.

出版信息

Nat Commun. 2025 Apr 17;16(1):3641. doi: 10.1038/s41467-025-58827-x.

Abstract

Biogenesis of mitoribosomes requires dedicated chaperones, RNA-modifying enzymes, and GTPases, and defects in mitoribosome assembly lead to severe mitochondriopathies in humans. Here, we characterize late-step assembly states of the small mitoribosomal subunit (mtSSU) by combining genetic perturbation and mutagenesis analysis with biochemical and structural approaches. Isolation of native mtSSU biogenesis intermediates via a FLAG-tagged variant of the GTPase MTG3 reveals three distinct assembly states, which show how factors cooperate to mature the 12S rRNA. In addition, we observe four distinct primed initiation mtSSU states with an incompletely matured rRNA, suggesting that biogenesis and translation initiation are not mutually exclusive processes but can occur simultaneously. Together, these results provide insights into mtSSU biogenesis and suggest a functional coupling between ribosome biogenesis and translation initiation in human mitochondria.

摘要

线粒体核糖体的生物发生需要特定的分子伴侣、RNA修饰酶和GTP酶,线粒体核糖体组装缺陷会导致人类严重的线粒体病。在这里,我们通过将基因干扰和诱变分析与生化及结构方法相结合,对小线粒体核糖体亚基(mtSSU)的后期组装状态进行了表征。通过GTP酶MTG3的FLAG标签变体分离天然mtSSU生物发生中间体,揭示了三种不同的组装状态,展示了各因子如何协同作用使12S rRNA成熟。此外,我们观察到四种不同的引发起始mtSSU状态,其rRNA未完全成熟,这表明生物发生和翻译起始不是相互排斥的过程,而是可以同时发生。这些结果共同为mtSSU生物发生提供了见解,并提示了人类线粒体中核糖体生物发生与翻译起始之间的功能偶联。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0ade/12003892/ec7856e80882/41467_2025_58827_Fig1_HTML.jpg

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