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首页> 外文期刊>Cell death & disease. >PDI-mediated S -nitrosylation of DRP1 facilitates DRP1-S616 phosphorylation and mitochondrial fission in CA1 neurons
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PDI-mediated S -nitrosylation of DRP1 facilitates DRP1-S616 phosphorylation and mitochondrial fission in CA1 neurons

机译:PDI介导的DRP1的S赤硝基化促进DRP1-S616磷酸化和CA1神经元的线粒体裂变

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Dynamin-related protein 1 (DRP1) is a key molecule to regulate mitochondrial fission. DRP1 activity is modulated by phosphorylation and S-nitrosylation on serine and cysteine residues, respectively. However, it is still unexplored whether S-nitrosylation of DRP1 affects its phosphorylation. In the present study, we found that Nω-nitro-l-arginine methyl ester hydrochloride (l-NAME, a NOS inhibitor) abolished S-nitrosylated (SNO-DRP1) and DRP1-serine (S) 616 phosphorylation levels in CA1 neurons under physiological condition. l-NAME led to mitochondrial elongation. In spite of the sustained NO synthesis, status epilepticus (a prolonged seizure activity, SE) diminished SNO-DRP1 and DRP1-S616 levels in CA1 neurons, accompanied by the reduced protein disulfide isomerase (PDI) expression and mitochondrial elongation. SE did not influence thioredoxin 1 (Trx1, a denitrosylating enzyme) activity, which was unaffected by l-NAME under physiological and post-SE condition. PDI knockdown decreased SNO-DRP1 and DRP1-S616 levels concomitant with mitochondrial elongation in CA1 neurons without altered NO synthesis under physiological condition. These findings indicate that PDI may be a NO donor of DRP1 to regulate DRP1-S616 phosphorylation, independent of Trx1 activity. Therefore, we suggest that PDI-mediated S-nitrosylation of DRP1 may be one of the major regulatory modifications for mitochondrial dynamics.
机译:Dynamin相关蛋白1(DRP1)是调节线粒体裂变的关键分子。 DRP1活性分别通过磷酸化和S-亚硝基化物在丝氨酸和半胱氨酸残基上调节。然而,它仍然是未探测DRP1的S-亚硝基化影响其磷酸化的情况。在本研究中,我们发现Nω-Nitro-L-精氨酸甲酯盐酸盐(L-名称,NoS抑制剂)废除了S-亚硝基聚(SnO-DRP1)和DRP1-丝氨酸616磷酸化水平在Ca1神经元生理条件。 L-name导致线粒体伸长率。尽管没有持续的合成,状态癫痫(延长的癫痫发作活性,SE)减少了CA1神经元中的SnO-DRP1和DRP1-S616水平,伴随着降低的蛋白质二硫化物异构酶(PDI)表达和线粒体伸长率。 SE没有影响硫昔林1(TRX1,脱氮酶)活性,其在生理和后期条件下不受L-NAME的影响。 PDI敲低下降的SnO-DRP1和DRP1-S616水平伴随着CA1神经元的线粒体伸长率,而不会在生理条件下改变合成。这些发现表明PDI可以是DRP1的任何供体,以调节DRP1-S616磷酸化,与TRX1活性无关。因此,我们表明DRP1的PDI介导的S-亚硝基化剂可以是线粒体动力学的主要调节修改之一。

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