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Nitrite and nitrite reductases: From molecular mechanisms to significance in human health and disease

机译:亚硝酸盐和亚硝酸盐还原酶:从分子机理到对人类健康和疾病的重要性

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Nitrite, previously considered physiologically irrelevant and a simple end product of endogenous nitric oxide (NO) metabolism, is now envisaged as a reservoir of NO to be activated in response to oxygen (O 2) depletion. In the first part of this review, we summarize and compare the mechanisms of nitrite-dependent production of NO in selected bacteria and in eukaryotes. Bacterial nitrite reductases, which are copper or heme-containing enzymes, play an important role in the adaptation of pathogens to O 2 limitation and enable microrganisms to survive in the human body. In mammals, reduction of nitrite to NO under hypoxic conditions is carried out in tissues and blood by an array of metalloproteins, including heme-containing proteins and molybdenum enzymes. In humans, tissues play a more important role in nitrite reduction, not only because most tissues produce more NO than blood, but also because deoxyhemoglobin efficiently scavenges NO in blood. In the second part of the review, we outline the significance of nitrite in human health and disease and describe the recent advances and pitfalls of nitrite-based therapy, with special attention to its application in cardiovascular disorders, inflammation, and anti-bacterial defence. It can be concluded that nitrite (as well as nitrate-rich diet for long-term applications) may hold promise as therapeutic agent in vascular dysfunction and ischemic injury, as well as an effective compound able to promote angiogenesis.
机译:亚硝酸盐,以前被认为与生理无关,是内源性一氧化氮(NO)代谢的简单最终产物,现在被认为是一氧化氮的储存库,可以响应氧(O 2)的消耗而被活化。在本综述的第一部分中,我们总结并比较了所选细菌和真核生物中亚硝酸盐依赖型NO生成机制。细菌亚硝酸盐还原酶是铜或血红素的酶,在使病原体适应O 2限制方面起着重要作用,并使微生物能够在人体中生存。在哺乳动物中,在缺氧条件下,亚硝酸盐在组织和血液中的还原是通过一系列金属蛋白(包括含血红素的蛋白和钼酶)在组织和血液中进行的。在人类中,组织在亚硝酸盐的还原中起着更重要的作用,这不仅是因为大多数组织产生的NO超过血液,而且还因为脱氧血红蛋白有效清除了血液中的NO。在本综述的第二部分中,我们概述了亚硝酸盐在人类健康和疾病中的重要性,并描述了基于亚硝酸盐的疗法的最新进展和陷阱,并特别关注了其在心血管疾病,炎症和抗菌防御中的应用。可以得出结论,亚硝酸盐(以及长期使用的富含硝酸盐的饮食)有望作为血管功能障碍和缺血性损伤的治疗剂,以及能够促进血管生成的有效化合物。

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