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Contribution of Trf4/5 and the Nuclear Exosome to Genome Stability Through Regulation of Histone mRNA Levels in Saccharomyces cerevisiae

机译:Trf4 / 5和核外来体通过调控酿酒酵母中组蛋白mRNA水平对基因组稳定性的贡献。

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摘要

Balanced levels of histones are crucial for chromosome stability, and one major component of this control regulates histone mRNA amounts. The Saccharomyces cerevisiae poly(A) polymerases Trf4 and Trf5 are involved in a quality control mechanism that mediates polyadenylation and consequent degradation of various RNA species by the nuclear exosome. None of the known RNA targets, however, explains the fact that trf mutants have specific cell cycle defects consistent with a role in maintaining genome stability. Here, we investigate the role of Trf4/5 in regulation of histone mRNA levels. We show that loss of Trf4 and Trf5, or of Rrp6, a component of the nuclear exosome, results in elevated levels of transcripts encoding DNA replication-dependent histones. Suggesting that increased histone levels account for the phenotypes of trf mutants, we find that TRF4 shows synthetic genetic interactions with genes that negatively regulate histone levels, including RAD53. Moreover, synthetic lethality of trf4Δ rad53Δ is rescued by reducing histone levels whereas overproduction of histones is deleterious to trf's and rrp6Δ mutants. These results identify TRF4, TRF5, and RRP6 as new players in the regulation of histone mRNA levels in yeast. To our knowledge, the histone transcripts are the first mRNAs that are upregulated in Trf mutants.
机译:组蛋白的平衡水平对于染色体的稳定性至关重要,该控制的主要组成部分调节组蛋白mRNA的量。酿酒酵母聚(A)聚合酶Trf4和Trf5参与质量控制机制,该机制介导聚腺苷酸化和随后核外泌体降解各种RNA。但是,没有一种已知的RNA靶可以解释trf突变体具有特定的细胞周期缺陷,这一事实与维持基因组稳定性的作用一致。在这里,我们研究了Trf4 / 5在调节组蛋白mRNA水平中的作用。我们显示,Trf4和Trf5或Rrp6(核外泌体的一个组成部分)的损失导致编码DNA复制依赖性组蛋白的转录本水平升高。提示增加的组蛋白水平解释了trf突变体的表型,我们发现TRF4显示了与负面调节组蛋白水平的基因(包括RAD53)的合成遗传相互作用。此外,通过降低组蛋白水平可以挽救trf4Δrad53Δ的合成杀伤力,而组蛋白的过量生产对trf's和rrp6Δ突变体有害。这些结果确定TRF4,TRF5和RRP6是调节酵母中组蛋白mRNA水平的新参与者。据我们所知,组蛋白转录本是Trf突变体中首个上调的mRNA。

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