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首页> 外文期刊>RNA >Structural and functional analysis of Nro1/Ett1: a protein involved in translation termination in S. cerevisiae and in O2-mediated gene control in S. pombe.
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Structural and functional analysis of Nro1/Ett1: a protein involved in translation termination in S. cerevisiae and in O2-mediated gene control in S. pombe.

机译:Nro1 / Ett1的结构和功能分析:一种蛋白质,参与酿酒酵母的翻译终止,并参与粟酒裂殖酵母中O2介导的基因控制。

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摘要

In Saccharomyces cerevisiae, the putative 2-OG-Fe(II) dioxygenase Tpa1 and its partner Ett1 have been shown to impact mRNA decay and translation. Hence, inactivation of these factors was shown to influence stop codon read-though. In addition, Tpa1 represses, by an unknown mechanism, genes regulated by Hap1, a transcription factor involved in the response to levels of heme and O(2). The Schizosaccharomyces pombe orthologs of Tpa1 and Ett1, Ofd1, and its partner Nro1, respectively, have been shown to regulate the stability of the Sre1 transcription factor in response to oxygen levels. To gain insight into the function of Nro1/Ett1, we have solved the crystal structure of the S. pombe Nro1 protein deleted of its 54 N-terminal residues. Nro1 unexpectedly adopts a Tetratrico Peptide Repeat (TPR) fold, a motif often responsible for protein or peptide binding. Two ligands, a sulfate ion and an unknown molecule, interact with a cluster of highly conserved amino acids on the protein surface. Mutation of these residues demonstrates that these ligand binding sites are essential for Ett1 function in S. cerevisiae, as investigated by assaying for efficient translation termination.
机译:在酿酒酵母中,已证明2-OG-Fe(II)双加氧酶TPa1及其伴侣Ett1影响mRNA的降解和翻译。因此,这些因子的失活被证明影响终止密码子通读。此外,Tpa1通过未知的机制抑制受Hap1调控的基因,Hap1是参与对血红素和O(2)水平响应的转录因子。 Tpa1和Ett1,Ofd1及其伴侣Nro1的粟酒裂殖酵母直系同源物已被证明可调节Sre1转录因子对氧水平的响应。为了深入了解Nro1 / Ett1的功能,我们解决了粟酒裂殖酵母Nro1蛋白54个N末端残基缺失的晶体结构。 Nro1意外地采用了Tetratrico Peptide Repeat(TPR)折叠,该基序通常负责蛋白质或肽的结合。硫酸根离子和未知分子这两个配体与蛋白质表面上高度保守的氨基酸簇相互作用。这些残基的突变表明,这些配体结合位点对于酿酒酵母中Ett1的功能是必不可少的,如通过分析有效翻译终止所研究的。

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