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Dual function of the tRNA(m(5)U54)methyltransferase in tRNA maturation.

机译:tRNA(m(5)U54)甲基转移酶在tRNA成熟中的双重功能。

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摘要

A 5-methyluridine (m(5)U) residue at position 54 is a conserved feature of bacterial and eukaryotic tRNAs. The methylation of U54 is catalyzed by the tRNA(m5U54)methyltransferase, which in Saccharomyces cerevisiae is encoded by the nonessential TRM2 gene. In this study, we identified four different strains with mutant forms of tRNA(Ser)CGA. The absence of the TRM2 gene in these strains decreased the stability of tRNA(Ser)CGA and induced lethality. Two alleles of TRM2 encoding catalytically inactive tRNA(m5U54)methyltransferases were able to stabilize tRNA(Ser)CGA in one of the mutants, revealing a role for the Trm2 protein per se in tRNA maturation. Other tRNA modification enzymes interacting with tRNA(Ser)CGA in the maturation process, such as Pus4p, Trm1 p, and Trm3p were essential or important for growth of the tRNA(Ser)CGA mutants. Moreover, Lhp1p, a protein binding RNA polymerase III transcripts, was required to stabilize the mutant tRNAs. Based on our results, we suggest that tRNA modification enzymes might have a role in tRNA maturation not necessarily linked to their known catalytic activity.
机译:在位置54的5-甲基尿苷(m(5)U)残留是细菌和真核tRNA的保守特征。 U54的甲基化由tRNA(m5U54)甲基转移酶催化,在酿酒酵母中,tRNA(m5U54)甲基由非必需TRM2基因编码。在这项研究中,我们确定了四个不同的菌株与tRNA(Ser)CGA的突变形式。这些菌株中不存在TRM2基因会降低tRNA(Ser)CGA的稳定性并导致致死性。编码催化性非活性tRNA(m5U54)甲基转移酶的TRM2的两个等位基因能够稳定其中一个突变体中的tRNA(Ser)CGA,从而揭示Trm2蛋白本身在tRNA成熟中的作用。在成熟过程中与tRNA(Ser)CGA相互作用的其他tRNA修饰酶,例如Pus4p,Trm1p和Trm3p,对于tRNA(Ser)CGA突变体的生长至关重要。此外,需要Lhp1p(一种蛋白质结合RNA聚合酶III转录本)来稳定突变tRNA。根据我们的结果,我们建议tRNA修饰酶可能在tRNA成熟中起作用,不一定与其已知的催化活性有关。

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