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解析酿酒酵母中 Mtg3 与线粒体核糖体的关联。

Insights into Mtg3-mitochondrial ribosome association in Saccharomyces cerevisiae.

机构信息

Department of Genetics, University of Delhi South Campus, New Delhi, India.

Department of Genetics, University of Delhi South Campus, New Delhi, India.

出版信息

Biochem Biophys Res Commun. 2024 Dec 10;737:150502. doi: 10.1016/j.bbrc.2024.150502. Epub 2024 Aug 8.

Abstract

Ribosome biogenesis is a highly regulated multistep process aided by energy-consuming auxiliary factors. GTPases form the largest class of auxiliary factors used by bacterial, cytosolic, and mitochondrial ribosomes for their maturation. Mtg3, a circularly permuted YqeH family of GTPase, is implicated in the mitoribosome small subunit biogenesis. However, its precise mechanistic role has yet to be characterized. Mtg3 is likely to bind precursor mitoribosome molecules during subunit maturation in vivo. However, this interaction has yet to be observed with mitoribosomes biochemically. In this study, we delineate the specific conditions necessary for preserving the association of Mtg3 with mitoribosomes on a sucrose density gradient. We show that the C-terminal domain of Mtg3 is required for robust binding to the mitoribosome. Furthermore, point mutants likely to abrogate GTP/GDP binding and GTPase activity compromise protein function in vivo. Surprisingly, the association with the mitoribosome was not compromised in mutants likely to be deficient for nucleotide binding/hydrolysis. Thus, our finding supports a model wherein Mtg3 binds to a precursor mitoribosome through its C-terminus to facilitate a conformational change or validate a folding intermediate driven by the GTP/GDP binding and hydrolysis cycle.

摘要

核糖体生物发生是一个高度调控的多步骤过程,需要消耗能量的辅助因子来辅助。GTP 酶形成了细菌、细胞质和线粒体核糖体用于成熟的最大一类辅助因子。Mtg3 是一种环状排列的 YqeH 家族 GTP 酶,参与线粒体核糖体小亚基的生物发生。然而,其确切的机制作用尚未得到表征。Mtg3 可能在体内亚基成熟过程中结合前体线粒体核糖体分子。然而,这种相互作用尚未在生化水平上观察到线粒体核糖体。在这项研究中,我们详细描述了在蔗糖密度梯度上保留 Mtg3 与线粒体核糖体结合的特定条件。我们表明,Mtg3 的 C 末端结构域对于与线粒体核糖体的强结合是必需的。此外,可能导致 GTP/GDP 结合和 GTP 酶活性丧失的点突变体使蛋白质在体内的功能受损。令人惊讶的是,与突变体结合的能力可能缺乏核苷酸结合/水解并不影响其与线粒体核糖体的结合。因此,我们的发现支持了这样一种模型,即 Mtg3 通过其 C 末端结合前体线粒体核糖体,以促进构象变化或验证由 GTP/GDP 结合和水解循环驱动的折叠中间产物。

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