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The human 18S rRNA base methyltransferases DIMT1L and WBSCR22-TRMT112 but not rRNA modification are required for ribosome biogenesis.

机译:人18S rRNA碱基甲基转移酶DIMT1L和WBSCR22-TRMT112不需要核糖体生物发生的rRNA修饰。

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摘要

At the heart of the ribosome lie ribosomal RNAs, whose catalytic function in translation is subtly modulated by posttranscriptional modifications. In the small ribosomal subunit of budding yeast, on the 18S rRNA, two adjacent adenosines (A1781/A1782) are N(6)-dimethylated by Dim1 near the decoding site, and one guanosine (G1575) is N(7)-methylated by Bud23-Trm112 at a ridge between the P- and E-site tRNAs. Here we establish human DIMT1L and WBSCR22-TRMT112 as the functional homologues of yeast Dim1 and Bud23-Trm112. We report that these enzymes are required for distinct pre-rRNA processing reactions leading to synthesis of 18S rRNA, and we demonstrate that in human cells, as in budding yeast, ribosome biogenesis requires the presence of the modification enzyme, rather than its RNA-modifying catalytic activity. We conclude that a quality control mechanism has been conserved from yeast to man, whereby binding of a methyltransferase to nascent pre-rRNAs is a prerequisite to processing, so that all cleaved RNAs are committed to faithful modification. We further report that 18S rRNA dimethylation is nuclear in human cells, in contrast to yeast, where it is cytoplasmic. Yeast and human ribosome biogenesis thus have both conserved and distinctive features.
机译:核糖体RNA位于核糖体的中心,其转录中的催化功能受转录后修饰的调节。在出芽酵母的小核糖体亚基中,在18S rRNA上,两个相邻的腺苷(A1781 / A1782)在解码位点附近被Dim1 N(6)-二甲基化,一个鸟苷(G1575)通过Ns(7)-甲基化Bud23-Trm112位于P位和E位tRNA之间的一个脊上。在这里,我们将人DIMT1L和WBSCR22-TRMT112建立为酵母Dim1和Bud23-Trm112的功能同源物。我们报道这些酶是导致18S rRNA合成的独特rRNA前加工反应所必需的,并且我们证明了在人类细胞中,如在发芽酵母中一样,核糖体生物发生需要修饰酶的存在,而不是其RNA修饰催化活性。我们得出的结论是,从酵母到人,质量控制机制一直是保守的,因此甲基转移酶与新生pre-rRNA的结合是加工的先决条件,因此所有裂解的RNA都致力于忠实的修饰。我们进一步报告18S rRNA甲基化是人类细胞中的核,与酵母相反,在酵母中它是细胞质的。因此,酵母和人核糖体的生物发生既具有保守又独特的特征。

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