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EAE-induced upregulation of mitochondrial MnSOD is associated with increases of mitochondrial SGK1 and Tom20 protein in the mouse kidney cortex

机译:EAE诱导的线粒体MNSOD上调与小鼠肾皮层中的线粒体SGK1和TOM20蛋白的增加有关

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Our previous demonstration that severe experimental autoimmune encephalomyelitis (EAE) increases MnSOD protein abundance in the mouse kidney cortex led this study to elucidate the underlying mechanism with monensin-treated HEK293 cells as a model. Severe EAE increases mitochondrial protein abundance of SGK1 kinase and Tom20, a critical subunit of mitochondrial translocase in the renal cortex. In HEK293 cells, catalase inhibits monensin-induced increases of mitochondrial SGK1 and Tom20 protein levels. Further, GSK650394, a specific inhibitor of SGK1 reduces monensin-induced increase of mitochondrial protein abundance of Tom20 and MnSOD. Finally, RNAi of Tom20 reduces the effect of monensin on MnSOD. MnSOD and Tom20 physically associate with each other. In conclusion, in HEK293 cells, mitochondrial reactive oxygen species increase protein abundance of mitochondrial SGK1, which leads to a rise of mitochondrial Tom20, resulting in importing MnSOD protein into the mitochondria. This could be a mechanism by which severe EAE up-regulates mitochondrial MnSOD in the kidney cortex.
机译:我们以前的示威性认为,严重的实验性自身免疫性脑脊髓炎(EAE)增加了小鼠肾皮层中的MNSOD蛋白丰度LED这项研究以阐明宫素处理的HEK293细胞的潜在机制作为模型。严重的EAE增加了SGK1激酶和TOM20的线粒体蛋白质丰度,肾皮质中的线粒体译团的临界亚基。在HEK293细胞中,过氧化氢酶抑制Monensin诱导的线粒体SGK1和汤姆20蛋白水平的增加。此外,GSK650394,SGK1的特异性抑制剂可降低Monensin诱导的Tom20和MNSOD的线粒体蛋白质丰度的增加。最后,汤姆20的RNAi降低了宫蛋白对MNSOD的影响。 MNSOD和Tom20物理地互相关联。总之,在HEK293细胞中,线粒体反应性氧物质增加了线粒体SGK1的蛋白质丰度,这导致线粒体汤姆20的升高,导致将MNSOD蛋白导入线粒体中。这可能是肾皮层中严重的EAE上调线粒体MNSOD的机制。

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