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The yeast rapid tRNA decay pathway primarily monitors the structural integrity of the acceptor and T-stems of mature tRNA

机译:酵母快速tRNA衰变途径主要监测成熟tRNA受体和T茎的结构完整性

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摘要

tRNAs, like other RNAs, are subject to quality control steps during and after biosynthesis. We previously described a rapid tRNA degradation (RTD) pathway in which the 5′–3′ exonucleases Rat1 and Xrn1 degrade mature tRNAVal(AAC) in yeast mutants lacking m7G and m5C, and mature tRNASer(CGA) in mutants lacking Um and ac4C. To understand how the RTD pathway selects substrate tRNAs among different tRNAs lacking the same modifications, we used a genetic screen to examine tRNASer(CGA) variants. Our results suggest that RTD substrate recognition in vivo depends primarily on the stability of the acceptor and T-stems, and not the anti-codon stem, and does not necessarily depend on modifications, since fully modified tRNAs are subject to RTD if appropriately destabilized. We found that weaker predicted stability of the acceptor and T-stems of tRNAs is strongly correlated with RTD sensitivity, increased RNase T2 sensitivity of this region of the tRNA in vitro, and increased exposure of the 5′ end to phosphatase. We also found that purified Xrn1 selectively degrades RTD substrate tRNAs in vitro under conditions in which nonsubstrates are immune. These results suggest that tRNAs have evolved not only for accurate translation, but for resistance to attack by RTD.
机译:像其他RNA一样,tRNA在生物合成过程中和之后都要进行质量控制。我们之前描述了一种快速的tRNA降解(RTD)途径,其中5'–3'核酸外切酶Rat1和Xrn1在缺乏m7G和m5C的酵母突变体中降解成熟的tRNAVal(AAC),而在缺乏Um和ac4C的突变体中成熟tRNASer(CGA)。为了了解RTD途径如何在缺乏相同修饰的不同tRNA中选择底物tRNA,我们使用了遗传筛选检查了tRNASer(CGA)变体。我们的结果表明,体内RTD底物的识别主要取决于受体和T-茎的稳定性,而不取决于抗密码子茎,并且不一定取决于修饰,因为经过完全修饰的tRNA如果受到适当的不稳定,则会受到RTD的影响。我们发现,较弱的tRNA受体和T-茎的预测稳定性与RTD敏感性,体外tRNA的该区域的RNase T2敏感性增加以及5'末端暴露于磷酸酶高度相关。我们还发现,纯化的Xrn1在非底物免疫的条件下在体外选择性降解RTD底物tRNA。这些结果表明,tRNA的进化不仅是为了精确翻译,而且是为了抵抗RTD的攻击。

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