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首页> 外文期刊>Eukaryotic cell >SYM1 Is the Stress-Induced Saccharomyces cerevisiae Ortholog of the Mammalian Kidney Disease Gene Mpv17 and Is Required for Ethanol Metabolism and Tolerance during Heat Shock
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SYM1 Is the Stress-Induced Saccharomyces cerevisiae Ortholog of the Mammalian Kidney Disease Gene Mpv17 and Is Required for Ethanol Metabolism and Tolerance during Heat Shock

机译:SYM1是哺乳动物肾脏疾病基因Mpv17的应力诱导酿酒酵母直系同源物,并且是热休克期间乙醇代谢和耐受所必需的

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Organisms rapidly adapt to severe environmental stress by inducing the expression of a wide array of heat shock proteins as part of a larger cellular response program. We have used a genomics approach to identify novel heat shock-induced genes in Saccharomyces cerevisiae. The uncharacterized open reading frame (ORF) YLR251W was found to be required for both metabolism and tolerance of ethanol during heat shock. YLR251W has significant homology to the mammalian peroxisomal membrane protein Mpv17, and Mpv17?/? mice exhibit age-onset glomerulosclerosis, deafness, hypertension, and, ultimately, death by renal failure. Expression of Mpv17 in ylr251wΔ cells complements the 37°C ethanol growth defect, suggesting that these proteins are functional orthologs. We have therefore renamed ORF YLR251W as SYM1 (for “stress-inducible yeast Mpv17”). In contrast to the peroxisomal localization of Mpv17, we find that Sym1 is an integral membrane protein of the inner mitochondrial membrane. In addition, transcriptional profiling of sym1Δ cells uncovered changes in gene expression, including dysregulation of a number of ethanol-repressed genes, exclusively at 37°C relative to wild-type results. Together, these data suggest an important metabolic role for Sym1 in mitochondrial function during heat shock. Furthermore, this study establishes Sym1 as a potential model for understanding the role of Mpv17 in kidney disease and cardiovascular biology.
机译:有机体通过诱导多种热休克蛋白的表达作为大型细胞反应程序的一部分,从而迅速适应严重的环境压力。我们已经使用基因组学方法来鉴定酿酒酵母中新的热激诱导基因。发现非特异的开放阅读框(ORF) YLR251W 是热休克期新陈代谢和乙醇耐受性所必需的。 YLR251W 与哺乳动物过氧化物酶体膜蛋白Mpv17具有显着同源性,而Mpv17 ?/?小鼠表现出年龄发作的肾小球硬化,耳聋,高血压,最终因肾衰竭而死亡。 Mpv17在 ylr251w Δ细胞中的表达弥补了37°C乙醇生长缺陷,表明这些蛋白是功能性直系同源物。因此,我们将ORF YLR251W 重命名为 SYM1 (用于“压力诱导型酵母Mpv17”)。与过氧化物酶体的Mpv17本地化相反,我们发现Sym1是内部线粒体膜的完整膜蛋白。此外,相对于野生型结果, sym1 Δ细胞的转录谱揭示了基因表达的变化,包括许多乙醇抑制的基因的失调。总之,这些数据表明在热休克期间,Sym1在线粒体功能中具有重要的代谢作用。此外,这项研究将Sym1建立为了解Mpv17在肾脏疾病和心血管生物学中作用的潜在模型。

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