H2S regulates endothelial nitric oxide synthase protein stability by promoting microRNA-455-3p expression

被引:0
作者
Xing-Hui Li
Wen-Long Xue
Ming-Jie Wang
Yu Zhou
Cai-Cai Zhang
Chen Sun
Lei Zhu
Kun Liang
Ying Chen
Bei-Bei Tao
Bo Tan
Bo Yu
Yi-Chun Zhu
机构
[1] Research Center on Aging and Medicine,Department of Physiology and Pathophysiology
[2] Fudan University,Department of physiology
[3] Shanghai Key Laboratory of Bioactive Small Molecules,Department of Vascular Surgery
[4] Shanghai Medical College,Department of Clinical Pharmacology
[5] Fudan University,undefined
[6] Hainan Medical College,undefined
[7] Huashan Hospital,undefined
[8] Fudan University,undefined
[9] Shuguang Hospital,undefined
[10] Affiliated to Shanghai University of Traditional Chinese Medicine,undefined
来源
Scientific Reports | / 7卷
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摘要
The aims of the present study are to determine whether hydrogen sulfide (H2S) is involved in the expression of endothelial nitric oxide synthase (eNOS) and nitric oxide (NO) production, and to identify the role of microRNA-455-3p (miR-455-3p) during those processes. In cultured human umbilical vein endothelial cells (HUVECs), the expression of miR-455-3p, eNOS protein and the NO production was detected after administration with 50 μM NaHS. The results indicated that H2S could augment the expression of miR-455-3p and eNOS protein, leading to the increase of NO level. We also found that overexpression of miR-455-3p in HUVECs increased the protein levels of eNOS whereas inhibition of miR-455-3p decreased it. Moreover, H2S and miR-455-3p could no longer increase the protein level of eNOS in the presence of proteasome inhibitor, MG-132. In vivo, miR-455-3p and eNOS expression were considerably increased in C57BL/6 mouse aorta, muscle and heart after administration with 50 μmol/kg/day NaHS for 7 days. We also identified that H2S levels and miR-455-3p expression increased in human atherosclerosis plaque while H2S levels decreased in plasma of atherosclerosis patients. Our data suggest that the stability of eNOS protein and the NO production could be regulated by H2S through miR-455-3p.
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