酶
前药
化学
生物化学
机制(生物学)
一氧化氮
线粒体
新陈代谢
药品
脂质代谢
作用机理
药物代谢
碱基
药物靶点
线粒体毒性
核苷酸转移酶
生物合成
作者
Michel A. Struwe,Axel J. Scheidig,Bernd Clement
标识
DOI:10.1016/j.jbc.2023.105306
摘要
The mitochondrial amidoxime-reducing component (mARC) is one of five known molybdenum enzymes in eukaryotes. mARC belongs to the MOSC domain superfamily, a large group of so far poorly studied molybdoenzymes. mARC was initially discovered as the enzyme activating N-hydroxylated prodrugs of basic amidines but has since been shown to also reduce a variety of other N-oxygenated compounds, for example, toxic nucleobase analogs. Under certain circumstances, mARC might also be involved in reductive nitric oxide synthesis through reduction of nitrite. Recently, mARC enzymes have received a lot of attention due to their apparent involvement in lipid metabolism and, in particular, because many genome-wide association studies have shown a common variant of human mARC1 to have a protective effect against liver disease. The mechanism linking mARC enzymes with lipid metabolism remains unknown. Here, we give a comprehensive overview of what is currently known about mARC enzymes, their substrates, structure, and apparent involvement in human disease.
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