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首页> 外文期刊>Nucleic acids research >The PolyA tail length of yeast histone mRNAs varies during the cell cycle and is influenced by Sen1p and Rrp6p
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The PolyA tail length of yeast histone mRNAs varies during the cell cycle and is influenced by Sen1p and Rrp6p

机译:酵母组蛋白mRNA的PolyA尾巴长度在细胞周期中变化,并受Sen1p和Rrp6p影响

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Yeast histone mRNAs are polyadenylated, yet factors such as Rrp6p and Trf4p, required for the 3′-end processing of non-polyadenylated RNAs, contribute to the cell cycle regulation of these transcripts. Here, we investigated the role of other known 3′-end processing/transcription termination factors of non-polyadenylated RNA in the biogenesis of histone mRNAs, specifically the Nab3p/Nrd1p/Sen1p complex. We also re-evaluated the polyadenylation status of these mRNAs during the cell cycle. Our analysis reveals that yeast histone mRNAs have shorter than average PolyA tails and the length of the PolyA tail varies during the cell cycle; S-phase histone mRNAs possess very short PolyA tails while in G1, the tail length is relatively longer. Inactivation of either Sen1p or Rrp6p leads to a decrease in the PolyA tail length of histone mRNAs. Our data also show that Sen1p contributes to 3′-end processing of histone primary transcripts. Thus, histone mRNAs are distinct from the general pool of yeast mRNAs and 3′-end processing and polyadenylation contribute to the cell cycle regulation of these transcripts.
机译:酵母组蛋白mRNA是聚腺苷酸化的,但是非聚腺苷酸化RNA的3'末端加工所需的诸如Rrp6p和Trf4p之类的因子有助于这些转录物的细胞周期调控。在这里,我们调查了其他非已知腺苷酸化RNA的3'-末端加工/转录终止因子在组蛋白mRNA,特别是Nab3p / Nrd1p / Sen1p复合物的生物合成中的作用。我们还重新评估了细胞周期中这些mRNA的聚腺苷酸化状态。我们的分析表明,酵母组蛋白的mRNA短于平均PolyA尾部,并且PolyA尾部的长度在细胞周期中有所变化。 S期组蛋白mRNA具有非常短的PolyA尾巴,而在G1中,尾巴长度相对较长。 Sen1p或Rrp6p的失活导致组蛋白mRNA的PolyA尾巴长度减少。我们的数据还表明,Sen1p有助于组蛋白初级转录本的3'末端加工。因此,组蛋白mRNAs不同于酵母mRNAs的一般库,并且3'端加工和聚腺苷酸化有助于这些转录物的细胞周期调节。

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