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将一氧化氮带入钼世界——个人视角。

Bringing Nitric Oxide to the Molybdenum World-A Personal Perspective.

机构信息

LAQV, REQUIMTE, Department of Chemistry, NOVA School of Science and Technology (FCT NOVA), 2829-516 Caparica, Portugal.

出版信息

Molecules. 2023 Aug 2;28(15):5819. doi: 10.3390/molecules28155819.

Abstract

Molybdenum-containing enzymes of the xanthine oxidase (XO) family are well known to catalyse oxygen atom transfer reactions, with the great majority of the characterised enzymes catalysing the insertion of an oxygen atom into the substrate. Although some family members are known to catalyse the "reverse" reaction, the capability to abstract an oxygen atom from the substrate molecule is not generally recognised for these enzymes. Hence, it was with surprise and scepticism that the "molybdenum community" noticed the reports on the mammalian XO capability to catalyse the oxygen atom abstraction of nitrite to form nitric oxide (NO). The lack of precedent for a molybdenum- (or tungsten) containing nitrite reductase on the nitrogen biogeochemical cycle contributed also to the scepticism. It took several kinetic, spectroscopic and mechanistic studies on enzymes of the XO family and also of sulfite oxidase and DMSO reductase families to finally have wide recognition of the molybdoenzymes' ability to form NO from nitrite. Herein, integrated in a collection of "personal views" edited by Professor Ralf Mendel, is an overview of my personal journey on the XO and aldehyde oxidase-catalysed nitrite reduction to NO. The main research findings and the path followed to establish XO and AO as competent nitrite reductases are reviewed. The evidence suggesting that these enzymes are probable players of the mammalian NO metabolism is also discussed.

摘要

含钼酶的黄嘌呤氧化酶 (XO) 家族以催化氧原子转移反应而闻名,大多数已鉴定的酶催化氧原子插入底物。尽管已知一些家族成员可以催化“逆”反应,但这些酶通常不被认为能够从底物分子中提取氧原子。因此,当“钼社区”注意到有关哺乳动物 XO 能够催化亚硝酸盐的氧原子提取以形成一氧化氮 (NO) 的报道时,他们感到惊讶和怀疑。氮生物地球化学循环中缺乏钼(或钨)含亚硝酸盐还原酶的先例也促成了这种怀疑。对 XO 家族以及亚硫酸盐氧化酶和 DMSO 还原酶家族的酶进行了几次动力学、光谱学和机制研究,最终广泛认识到钼酶从亚硝酸盐形成 NO 的能力。在此,在由 Mendel 教授编辑的“个人观点”集中,概述了我在 XO 和醛氧化酶催化的亚硝酸盐还原为 NO 方面的个人历程。回顾了主要的研究发现和确定 XO 和 AO 为有效亚硝酸盐还原酶的途径。还讨论了表明这些酶可能是哺乳动物 NO 代谢的参与者的证据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bc37/10420851/8f8fe919aa37/molecules-28-05819-g001.jpg

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