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RNA Polymerase I-Promoted HIS4 Expression Yields Uncapped Polyadenylated mRNA That Is Unstable and Inefficiently Translated in Saccharomyces cerevisiae

机译:RNA聚合酶I促进的HIS4表达产生不加盖的在啤酒酵母中不稳定且无效翻译的多聚腺苷酸mRNA。

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摘要

The HIS4 gene in Saccharomyces cerevisiae was put under the transcriptional control of RNA polymerase I to determine the in vivo consequences on mRNA processing and gene expression. This gene, referred to as rhis4, was substituted for the normal HIS4 gene on chromosome III. The rhis4 gene transcribes two mRNAs, of which each initiates at the polymerase (pol) I transcription initiation site. One transcript, rhis4s, is similar in size to the wild-type HIS4 mRNA. Its 3′ end maps to the HIS4 3′ noncoding region, and it is polyadenylated. The second transcript, rhis4l, is bicistronic. It encodes the HIS4 coding region and a second open reading frame, YCL184, that is located downstream of the HIS4 gene and is predicted to be transcribed in the same direction as HIS4 on chromosome III. The 3′ end of rhis4l maps to the predicted 3′ end of the YCL184 gene and is also polyadenylated. Based on in vivo labeling experiments, the rhis4 gene appears to be more actively transcribed than the wild-type HIS4 gene despite the near equivalence of the steady-state levels of mRNAs produced from each gene. This finding indicated that rhis4 mRNAs are rapidly degraded, presumably due to the lack of a cap structure at the 5′ end of the mRNA. Consistent with this interpretation, a mutant form of XRN1, which encodes a 5′-3′ exonuclease, was identified as an extragenic suppressor that increases the half-life of rhis4 mRNA, leading to a 10-fold increase in steady-state mRNA levels compared to the wild-type HIS4 mRNA level. This increase is dependent on pol I transcription. Immunoprecipitation by anticap antiserum suggests that the majority of rhis4 mRNA produced is capless. In addition, we quantitated the level of His4 protein in a rhis4 xrn1Δ genetic background. This analysis indicates that capless mRNA is translated at less than 10% of the level of translation of capped HIS4 mRNA. Our data indicate that polyadenylation of mRNA in yeast occurs despite HIS4 being transcribed by RNA polymerase I, and the 5′ cap confers stability to mRNA and affords the ability of mRNA to be translated efficiently in vivo.
机译:将酿酒酵母中的HIS4基因置于RNA聚合酶I的转录控制之下,以确定其对mRNA加工和基因表达的体内影响。该基因被称为rhis4,取代了染色体III上的正常HIS4基因。 rhis4基因转录两个mRNA,每个均在聚合酶(pol)I转录起始位点起始。一种转录物rhis4s的大小与野生型HIS4 mRNA相似。它的3'端映射到HIS4 3'非编码区,并且被聚腺苷酸化。第二转录物rhis4l是双顺反子。它编码HIS4编码区和位于HIS4基因下游的第二个开放阅读框YCL184,并预测其转录方向与III号染色体上的HIS4相同。 rhis4l的3'末端映射到YCL184基因的预测3'末端,并且也被聚腺苷酸化。根据体内标记实验,尽管每个基因产生的mRNA的稳态水平几乎相等,但rhis4基因似乎比野生型 HIS4 基因更活跃地转录。该发现表明 rhis4 mRNA被迅速降解,大概是由于在其5'端缺少帽结构。与这种解释一致,鉴定出编码5'-3'核酸外切酶的 XRN1 突变体形式,它是增加 rhis4 mRNA半衰期的外源抑制因子。与野生型 HIS4 mRNA水平相比,稳态mRNA水平增加了10倍。该增加取决于pol I转录。抗帽抗血清的免疫沉淀表明产生的大多数 rhis4 mRNA是无帽的。此外,我们在 rhis4xrn1Δ遗传背景下定量了His4蛋白的水平。该分析表明,无盖mRNA的翻译量少于加盖的 HIS4 mRNA的翻译水平的10%。我们的数据表明,尽管 HIS4 被RNA聚合酶I转录,酵母中仍会发生mRNA的聚腺苷酸化,并且5'帽赋予了mRNA稳定性,并提供了在体内有效翻译mRNA的能力。

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