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翻译终止因子甲基转移酶 Mtq2-Trm112 复合物的催化活性对于大亚基核糖体的生物发生是必需的。

The catalytic activity of the translation termination factor methyltransferase Mtq2-Trm112 complex is required for large ribosomal subunit biogenesis.

机构信息

UMR8261 (CNRS, Université de Paris), Institut de Biologie Physico-Chimique, 13 rue Pierre et Marie Curie, 75005 Paris, France.

RNA Molecular Biology, Fonds de la Recherche Scientifique (F.R.S.-FNRS), Université Libre de Bruxelles Cancer Research Center (U-CRC), Center for Microscopy and Molecular Imaging (CMMI), Gosselies, Belgium.

出版信息

Nucleic Acids Res. 2020 Dec 2;48(21):12310-12325. doi: 10.1093/nar/gkaa972.

Abstract

The Mtq2-Trm112 methyltransferase modifies the eukaryotic translation termination factor eRF1 on the glutamine side chain of a universally conserved GGQ motif that is essential for release of newly synthesized peptides. Although this modification is found in the three domains of life, its exact role in eukaryotes remains unknown. As the deletion of MTQ2 leads to severe growth impairment in yeast, we have investigated its role further and tested its putative involvement in ribosome biogenesis. We found that Mtq2 is associated with nuclear 60S subunit precursors, and we demonstrate that its catalytic activity is required for nucleolar release of pre-60S and for efficient production of mature 5.8S and 25S rRNAs. Thus, we identify Mtq2 as a novel ribosome assembly factor important for large ribosomal subunit formation. We propose that Mtq2-Trm112 might modify eRF1 in the nucleus as part of a quality control mechanism aimed at proof-reading the peptidyl transferase center, where it will subsequently bind during translation termination.

摘要

Mtq2-Trm112 甲基转移酶在普遍保守的 GGQ 基序的谷氨酰胺侧链上修饰真核翻译终止因子 eRF1,该基序对于新合成肽的释放至关重要。尽管这种修饰存在于生命的三个领域中,但它在真核生物中的确切作用仍不清楚。由于 MTQ2 的缺失会导致酵母严重的生长缺陷,我们进一步研究了它的作用,并测试了它在核糖体生物发生中的潜在作用。我们发现 Mtq2 与核 60S 亚基前体相关,我们证明其催化活性对于核仁中前 60S 的释放以及成熟 5.8S 和 25S rRNA 的有效产生是必需的。因此,我们将 Mtq2 鉴定为一种新的核糖体组装因子,对于大核糖体亚基的形成很重要。我们提出 Mtq2-Trm112 可能在核中修饰 eRF1,作为旨在校对肽基转移酶中心的质量控制机制的一部分,随后在翻译终止过程中它将结合在该中心。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/423b/7708063/6f745ed04ba5/gkaa972fig1.jpg

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