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Structure of cyanase reveals that a novel dimeric and decameric arrangement of subunits is required for formation of the enzyme active site

机译:氰化酶的结构表明形成酶活性位点需要新的二聚体和十聚体亚基排列

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摘要

BackgroundCyanase is an enzyme found in bacteria and plants that catalyzes the reaction of cyanate with bicarbonate to produce ammonia and carbon dioxide. In Escherichia coli, cyanase is induced from the cyn operon in response to extracellular cyanate. The enzyme is functionally active as a homodecamer of 17 kDa subunits, and displays half-site binding of substrates or substrate analogs. The enzyme shows no significant amino acid sequence homology with other proteins.
机译:背景技术氰化酶是在细菌和植物中发现的一种酶,它催化氰酸盐与碳酸氢盐的反应产生氨和二氧化碳。在大肠杆菌中,响应于细胞外氰酸盐,从cyn操纵子中诱导出氰化酶。该酶在功能上具有17 kDa亚基的同高聚体活性,并显示底物或底物类似物的半位点结合。该酶与其他蛋白质没有明显的氨基酸序列同源性。

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