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首页> 外文期刊>Biochimica et biophysica acta. Molecular cell research >Regulation of MAP kinase Hog1 by calmodulin during hyperosmotic stress
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Regulation of MAP kinase Hog1 by calmodulin during hyperosmotic stress

机译:钙调蛋白在高渗应激过程中对MAP激酶Hog1的调节

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Mitogen-activated protein kinase (Hog1 in yeast and ortholog p38 in human cells) plays a critical role in the signal transduction pathway that is rapidly activated under multiple stress conditions. Environmental stress stimuli such as hyperosmotic stress cause changes in cellular ATP metabolism required for hyperosmotic stress tolerance. Furthermore, hyperosmotic stress induces rapid Ca2+ signals in eukaryotic cells. These Ca2+ signals can be decoded by Ca2+ sensor calmodulin (CaM). By using genetic and biochemical approaches, we demonstrate that Hog1 is a novel CaM-binding protein, and that CaM-binding to Hog1 is involved in the mediation of the hyperosmotic stress signaling pathway. In addition, we show that p38 alpha, a human ortholog of Hog1, interacts with CaM, suggesting that the CaM-binding feature of Hog1/p38 alpha is evolutionarily conserved in eukaryotic cells. Hog1 is likely involved in cellular ATP regulation through CaM signaling during hyperosmotic stress. Therefore, this work suggests that Hog1 plays an important role in connecting CaM signaling with the hyperosmotic stress pathway by directly interacting with CaM in Saccharomyces cerevisiae. (C) 2016 Elsevier B.V. All rights reserved.
机译:丝裂原激活的蛋白激酶(酵母中的Hog1和人细胞中的ortholog p38)在信号转导途径中起着关键作用,该信号转导途径在多种胁迫条件下均被迅速激活。环境压力刺激(例如高渗压力)会导致高渗压力耐受性所需的细胞ATP代谢发生变化。此外,高渗胁迫可在真核细胞中诱导快速的Ca2 +信号。这些Ca2 +信号可以由Ca2 +传感器钙调蛋白(CaM)解码。通过使用遗传和生化方法,我们证明了Hog1是一种新型的CaM结合蛋白,并且CaM与Hog1的结合参与了高渗应激信号通路的介导。此外,我们显示p38 alpha,人类Hog1的直系同源物,与CaM相互作用,这表明Hog1 / p38 alpha的CaM结合特征在真核细胞中是进化保守的。在高渗胁迫期间,Hog1可能通过CaM信号传导参与细胞ATP调节。因此,这项工作表明,Hog1通过直接与酿酒酵母中的CaM相互作用,在CaM信号与高渗应激途径的连接中起重要作用。 (C)2016 Elsevier B.V.保留所有权利。

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