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细胞血红素蛋白在香烟烟雾成分诱导的血管平滑肌细胞中一氧化氮生物利用度丧失中的作用。

Role of cytoglobin in cigarette smoke constituent-induced loss of nitric oxide bioavailability in vascular smooth muscle cells.

机构信息

Department of Internal Medicine, Division of Cardiovascular Medicine, And the EPR Center, Davis Heart and Lung Research Institute, College of Medicine, The Ohio State University, Columbus, OH, 43210, USA; Department of Pharmacology and Toxicology, College of Pharmacy, Al-Azhar University, Cairo, Egypt.

Department of Pharmacology and Toxicology, College of Pharmacy, Al-Azhar University, Cairo, Egypt.

出版信息

Nitric Oxide. 2022 Feb 1;119:9-18. doi: 10.1016/j.niox.2021.12.002. Epub 2021 Dec 4.

Abstract

Cytoglobin (Cygb) has been identified as the major nitric oxide (NO) metabolizing protein in vascular smooth muscle cells (VSMCs) and is crucial for the regulation of vascular tone. In the presence of its requisite cytochrome B5a (B5)/B5 reductase-isoform-3 (B5R) reducing system, Cygb controls NO metabolism through the oxygen-dependent process of NO dioxygenation. Tobacco cigarette smoking (TCS) induces vascular dysfunction; however, the role of Cygb in the pathophysiology of TCS-induced cardiovascular disease has not been previously investigated. While TCS impairs NO biosynthesis, its effect on NO metabolism remains unclear. Therefore, we performed studies in aortic VSMCs with tobacco smoke extract (TSE) exposure to investigate the effects of cigarette smoke constituents on the rates of NO decay, with focus on the alterations that occur in the process of Cygb-mediated NO metabolism. TSE greatly enhanced the rates of NO metabolism by VSMCs. An initial increase in superoxide-mediated NO degradation was seen at 4 h of exposure. This was followed by much larger progressive increases at 24 and 48 h, accompanied by parallel increases in the expression of Cygb and B5/B5R. siRNA-mediated Cygb knockdown greatly decreased these TSE-induced elevations in NO decay rates. Therefore, upregulation of the levels of Cygb and its reducing system accounted for the large increase in NO metabolism rate seen after 24 h of TSE exposure. Thus, increased Cygb-mediated NO degradation would contribute to TCS-induced vascular dysfunction and partial inhibition of Cygb expression or its NO dioxygenase function could be a promising therapeutic target to prevent secondary cardiovascular disease.

摘要

细胞血红素结合蛋白(Cytoglobin,Cygb)已被鉴定为血管平滑肌细胞(vascular smooth muscle cells,VSMCs)中主要的一氧化氮(nitric oxide,NO)代谢蛋白,对于调节血管张力至关重要。在其必需的细胞色素 B5a(Cytochrome B5a,B5)/B5 还原酶-同工型 3(B5 reductase-isoform-3,B5R)还原系统存在的情况下,Cygb 通过 NO 双氧化的氧依赖性过程控制 NO 代谢。吸烟会导致血管功能障碍;然而,Cygb 在吸烟引起的心血管疾病的病理生理学中的作用尚未得到研究。虽然吸烟会损害 NO 的生物合成,但它对 NO 代谢的影响尚不清楚。因此,我们在暴露于烟草烟雾提取物(Tobacco smoke extract,TSE)的主动脉 VSMCs 中进行了研究,以调查香烟烟雾成分对 NO 衰减率的影响,重点关注 Cygb 介导的 NO 代谢过程中发生的变化。TSE 大大增加了 VSMCs 的 NO 代谢率。在暴露 4 小时时,观察到超氧化物介导的 NO 降解的初始增加。这之后在 24 和 48 小时时,伴随着 Cygb 和 B5/B5R 表达的平行增加,出现了更大的逐渐增加。siRNA 介导的 Cygb 敲低大大降低了这些 TSE 诱导的 NO 衰减率升高。因此,Cygb 及其还原系统水平的上调解释了 TSE 暴露 24 小时后观察到的 NO 代谢率的大幅增加。因此,增加的 Cygb 介导的 NO 降解可能导致吸烟引起的血管功能障碍,部分抑制 Cygb 表达或其 NO 双氧化酶功能可能是预防继发性心血管疾病的有前途的治疗靶点。

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本文引用的文献

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Regulation of Nitric Oxide Metabolism and Vascular Tone by Cytoglobin.细胞血红素对一氧化氮代谢和血管张力的调节。
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