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RNA methylation by Dnmt2 protects transfer RNAs against stress-induced cleavage.

机译:Dnmt2使RNA甲基化可保护转移的RNA免受应力诱导的裂解。

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摘要

Dnmt2 proteins are the most conserved members of the DNA methyltransferase enzyme family, but their substrate specificity and biological functions have been a subject of controversy. We show here that, in addition to tRNA(Asp-GTC), tRNA(Val-AAC) and tRNA(Gly-GCC) are also methylated by Dnmt2. Drosophila Dnmt2 mutants showed reduced viability under stress conditions, and Dnmt2 relocalized to stress granules following heat shock. Strikingly, stress-induced cleavage of tRNAs was Dnmt2-dependent, and Dnmt2-mediated methylation protected tRNAs against ribonuclease cleavage. These results uncover a novel biological function of Dnmt2-mediated tRNA methylation, and suggest a role for Dnmt2 enzymes during the biogenesis of tRNA-derived small RNAs.
机译:Dnmt2蛋白是DNA甲基转移酶家族中最保守的成员,但其底物特异性和生物学功能一直是争议的主题。我们在这里显示,除了tRNA(Asp-GTC),tRNA(Val-AAC)和tRNA(Gly-GCC)也被Dnmt2甲基化。果蝇Dnmt2突变体在应激条件下显示出降低的生存力,并且在热激后Dnmt2重新定位到应激颗粒。引人注目的是,应力诱导的tRNA裂解是Dnmt2依赖性的,而Dnmt2介导的甲基化保护tRNA不受核糖核酸酶裂解。这些结果揭示了Dnmt2介导的tRNA甲基化的新型生物学功能,并暗示了Dnmt2酶在tRNA衍生的小RNA的生物合成过程中的作用。

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