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Cip1 and Cip2 are novel RNA-recognition-motif proteins that counteract Csx1 function during oxidative stress

机译:Cip1和Cip2是新型的RNA识别基序蛋白,可在氧化应激中抵消Csx1的功能

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摘要

Eukaryotic cells reprogram their global patterns of gene expression in response to stress. Recent studies in Schizosaccharomyces pombe showed that the RNA-binding protein Csx1 plays a central role in controlling gene expression during oxidative stress. It does so by stabilizing atf1(+) mRNA, which encodes a subunit of a bZIP transcription factor required for gene expression during oxidative stress. Here, we describe two related proteins, Cip1 and Cip2, that were identified by multidimensional protein identification technology (MudPIT) as proteins that coprecipitate with Csx1. Cip1 and Cip2 are cytoplasmic proteins that have RNA recognition motifs (RRMs). Neither protein is essential for viability, but a cip1 Delta cip2 Delta strain grows poorly and has altered cellular morphology. Genetic epistasis studies and whole genome expression profiling show that Cip1 and Cip2 exert posttranscriptional control of gene expression in a manner that is counteracted by Csx1. Notably, the sensitivity of csx1 Delta cells to oxidative stress and their inability to induce expression of Atf1-dependent genes are partially rescued by cip1 Delta and cip2 Delta mutations. This study emphasizes the importance of a modulated mRNA stability in the eukaryotic stress response pathways and adds new information to the role of RNA-binding proteins in the oxidative stress response.
机译:真核细胞响应压力重新编程其整体基因表达模式。最近在粟酒裂殖酵母中的研究表明,RNA结合蛋白Csx1在氧化应激期间在控制基因表达中起着核心作用。它是通过稳定atf1(+)mRNA来实现的,它编码氧化应激期间基因表达所需的bZIP转录因子的亚基。在这里,我们描述了两个相关的蛋白质Cip1和Cip2,它们被多维蛋白质识别技术(MudPIT)识别为与Csx1共沉淀的蛋白质。 Cip1和Cip2是具有RNA识别基序(RRM)的细胞质蛋白。两种蛋白质都不是生存力所必需的,但是cip1 Delta cip2 Delta菌株生长不良,并且改变了细胞形态。遗传上位性研究和全基因组表达谱分析表明,Cip1和Cip2以与Csx1抵消的方式对基因表达进行转录后控制。值得注意的是,csx1 Delta细胞对氧化应激的敏感性及其无法诱导Atf1依赖性基因表达的部分原因是通过cip1 Delta和cip2 Delta突变得以挽救的。这项研究强调了真核生物应激反应途径中调制的mRNA稳定性的重要性,并为RNA结合蛋白在氧化应激反应中的作用提供了新的信息。

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