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The O-GlcNAc transferase OGT is a conserved and essential regulator of the cellular and organismal response to hypertonic stress

机译:<斜视> O -GLCNAc转移酶OGT是对高渗应激的细胞和有机体反应的保守和必需的调节因子

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The conserved O -GlcNAc transferase OGT O -GlcNAcylates serine and threonine residues of intracellular proteins to regulate their function. OGT is required for viability in mammalian cells, but its specific roles in cellular physiology are poorly understood. Here we describe a conserved requirement for OGT in an essential aspect of cell physiology: the hypertonic stress response. Through a forward genetic screen in Caenorhabditis elegans , we discovered OGT is acutely required for osmoprotective protein expression and adaptation to hypertonic stress. Gene expression analysis shows that ogt-1 functions through a post-transcriptional mechanism. Human OGT partially rescues the C . elegans phenotypes, suggesting that the osmoregulatory functions of OGT are ancient. Intriguingly, expression of O-GlcNAcylation-deficient forms of human or worm OGT rescue the hypertonic stress response phenotype. However, expression of an OGT protein lacking the tetracopeptide repeat (TPR) domain does not rescue. Our findings are among the first to demonstrate a specific physiological role for OGT at the organismal level and demonstrate that OGT engages in important molecular functions outside of its well described roles in post-translational O-GlcNAcylation of intracellular proteins.
机译:保守的O-GLCNAc转移酶OGT O-GLCNACYLATE细胞内蛋白质的丝氨酸和苏氨酸残基来调节其功能。在哺乳动物细胞中的可行性需要OGT,但其在细胞生理中的特定作用较差地理解。在这里,我们描述了在细胞生理学的基本方面的OGT的保守要求:高渗应激反应。通过在八角杆菌的前进遗传筛查中,我们发现OGT急性需要渗透蛋白表达和适应高渗压力。基因表达分析表明OGT-1通过转录后机制起作用。人OGT部分拯救了C.秀丽隐体表型,表明OGT的OSMoregulatory功能是古代的。有趣的是,人或蠕虫OGT的O-Glcnacylation缺陷形式的表达拯救高渗应激表型。然而,缺乏四肽重复(TPR)结构域的OGT蛋白的表达不会抢救。我们的发现是第一个在有机体水平上证明OGT的特定生理作用的发现,并证明OGT在细胞内蛋白的翻译后O-Glcnacy中的良好描述的作用之外的重要分子功能。

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