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首页> 外文期刊>Nucleic acids research >Involvement of Vts1, a structure-specific RNA-binding protein, in Okazaki fragment processing in yeast
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Involvement of Vts1, a structure-specific RNA-binding protein, in Okazaki fragment processing in yeast

机译:Vts1,一种结构特异性的RNA结合蛋白,在酵母冈崎片段加工中的参与

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摘要

The non-essential VTS1 gene of Saccharomyces cerevisiae is highly conserved in eukaryotes and encodes a sequence- and structure-specific RNA-binding protein. The Vts1 protein has been implicated in post-transcriptional regulation of a specific set of mRNAs that contains its-binding site at their 3′-untranslated region. In this study, we identified VTS1 as a multi-copy suppressor of dna2-K1080E, a lethal mutant allele of DNA2 that lacks DNA helicase activity. The suppression was allele-specific, since overexpression of Vts1 did not suppress the temperature-dependent growth defects of dna2Δ405N devoid of the N-terminal 405-amino-acid residues. Purified recombinant Vts1 stimulated the endonuclease activity of wild-type Dna2, but not the endonuclease activity of Dna2Δ405N, indicating that the activation requires the N-terminal domain of Dna2. Stimulation of Dna2 endonuclease activity by Vts1 appeared to be the direct cause of suppression, since the multi-copy expression of Dna2-K1080E suppressed the lethality observed with its single-copy expression. We found that vts1Δ dna2Δ405N and vts1Δdna2-7 double mutant cells displayed synergistic growth defects, in support of a functional interaction between two genes. Our results provide both in vivo and in vitro evidence that Vts1 is involved in lagging strand synthesis by modulating the Dna2 endonuclease activity that plays an essential role in Okazaki fragment processing.
机译:酿酒酵母的非必需VTS1基因在真核生物中高度保守,并编码具有序列和结构特异性的RNA结合蛋白。 Vts1蛋白已参与转录后调控一组特定的mRNA,这些mRNA在其3'非翻译区包含其结合位点。在这项研究中,我们确定了VTS1是dna2-K1080E的多拷贝抑制剂,dna2-K1080E是缺乏DNA解旋酶活性的DNA2的致死突变等位基因。抑制是等位基因特异性的,因为Vts1的过表达不能抑制缺少N端405个氨基酸残基的dna2Δ405N的温度依赖性生长缺陷。纯化的重组Vts1刺激了野生型Dna2的核酸内切酶活性,但没有刺激Dna2Δ405N的核酸内切酶活性,表明该激活需要Dna2的N端结构域。 Vts1刺激Dna2核酸内切酶活性似乎是抑制的直接原因,因为Dna2-K1080E的多拷贝表达抑制了单拷贝表达所观察到的致死性。我们发现vts1Δdna2Δ405N和vts1Δdna2-7双突变细胞显示协同生长缺陷,以支持两个基因之间的功能相互作用。我们的结果提供了体内和体外的证据,表明Vts1通过调节在冈崎片段加工中起重要作用的Dna2内切核酸酶活性而参与了滞后链的合成。

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