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ENOS 的线粒体重分布受 AKT1 和二聚体状态的调节。

The mitochondrial redistribution of ENOS is regulated by AKT1 and dimer status.

机构信息

Center for Translational Science, Florida International University, Port St. Lucie, FL, 34987, USA; Departments of Environmental Health Sciences, Robert Stempel College of Public Health and Social Work, Florida International University, Miami, FL, 33174, USA.

Center for Translational Science, Florida International University, Port St. Lucie, FL, 34987, USA; Department of Cellular and Molecular Medicine, Herbert Wertheim College of Medicine, Florida International University, Miami, FL, 33174, USA.

出版信息

Nitric Oxide. 2024 Nov 1;152:90-100. doi: 10.1016/j.niox.2024.09.009. Epub 2024 Sep 25.

Abstract

Previously, we have shown that endothelial nitric-oxide synthase (eNOS) dimer levels directly correlate with the interaction of eNOS with hsp90 (heat shock protein 90). Further, the disruption of eNOS dimerization correlates with its redistribution to the mitochondria. However, the causal link between these events has yet to be investigated and was the focus of this study. Our data demonstrates that simvastatin, which decreases the mitochondrial redistribution of eNOS, increased eNOS-hsp90 interactions and enhanced eNOS dimerization in cultured pulmonary arterial endothelial cells (PAEC) from a lamb model of pulmonary hypertension (PH). Our data also show that the dimerization of a monomeric fraction of human recombinant eNOS was stimulated in the presence of hsp90 and ATP. The over-expression of a dominant negative mutant of hsp90 (DNHsp90) decreased eNOS dimer levels and enhanced its mitochondrial redistribution. We also found that the peroxynitrite donor3-morpholinosydnonimine (SIN-1) increased the mitochondrial redistribution of eNOS in PAEC and this was again associated with decreased eNOS dimer levels. Our data also show in COS-7 cells, the SIN-1 mediated mitochondrial redistribution of wildtype eNOS (WT-eNOS) is significantly higher than a dimer stable eNOS mutant protein (C94R/C99R-eNOS). Conversely, the mitochondrial redistribution of a monomeric eNOS mutant protein (C96A-eNOS) was enhanced. Finally, we linked the SIN-1-mediated mitochondrial redistribution of eNOS to the Akt1-mediated phosphorylation of eNOS at Serine(S) and showed that the accessibility of this residue to phosphorylation is regulated by dimerization status. Thus, our data reveal a novel mechanism of pulmonary endothelial dysfunction mediated by mitochondrial redistribution of eNOS, regulated by dimerization status and the phosphorylation of S.

摘要

先前,我们已经证实内皮型一氧化氮合酶(eNOS)二聚体水平与 eNOS 与 hsp90(热休克蛋白 90)的相互作用直接相关。此外,eNOS 二聚体的破坏与它向线粒体的重新分布相关。然而,这些事件之间的因果关系尚未得到研究,这也是本研究的重点。我们的数据表明,辛伐他汀可减少 eNOS 的线粒体重新分布,增加 eNOS-hsp90 相互作用,并增强肺动脉内皮细胞(PAEC)中 eNOS 的二聚化,这是肺动脉高压(PH)羊模型中的现象。我们的数据还表明,在 hsp90 和 ATP 的存在下,人重组 eNOS 的单体部分的二聚化得到刺激。hsp90 的显性负突变体(DNHsp90)的过表达降低了 eNOS 二聚体水平并增强了其线粒体重新分布。我们还发现,过氧亚硝酸盐供体 3-吗啉代-sydnonimine(SIN-1)增加了 PAEC 中 eNOS 的线粒体重新分布,这再次与 eNOS 二聚体水平降低相关。我们的数据还表明,在 COS-7 细胞中,SIN-1 介导的野生型 eNOS(WT-eNOS)的线粒体重新分布明显高于二聚体稳定的 eNOS 突变蛋白(C94R/C99R-eNOS)。相反,单体 eNOS 突变蛋白(C96A-eNOS)的线粒体重新分布得到增强。最后,我们将 SIN-1 介导的 eNOS 线粒体重新分布与 Akt1 介导的 eNOS 丝氨酸(S)磷酸化联系起来,并表明该残基的磷酸化易感性受二聚化状态调节。因此,我们的数据揭示了一种由 eNOS 的线粒体重新分布介导的新型肺内皮功能障碍机制,该机制受二聚化状态和 S 的磷酸化调节。

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