首页> 美国卫生研究院文献>Biochemical Journal >Effect of mutations in the transmethylase and dehydrogenase/chelatase domains of sirohaem synthase (CysG) on sirohaem and cobalamin biosynthesis.
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Effect of mutations in the transmethylase and dehydrogenase/chelatase domains of sirohaem synthase (CysG) on sirohaem and cobalamin biosynthesis.

机译:西罗海姆合酶(CysG)的转甲基酶和脱氢酶/螯合酶结构域中的突变对西罗海姆和钴胺素生物合成的影响。

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摘要

The Escherichia coli CysG protein (sirohaem synthase) catalyses four separate reactions that are required for the transformation of uroporphyrinogen III into sirohaem, initially two S-adenosyl-l-methionine-dependent transmethylations at positions 2 and 7, mediated through the C-terminal, or CysGA, catalytic domain of the protein, and subsequently a ferrochelation and dehydrogenation, mediated through the N-terminal, or CysGB, catalytic domain of the enzyme. This report describes how the deletion of the NAD+-binding site of CysG, located within the first 35 residues of the N-terminus, is detrimental to the activity of CysGB but does not affect the catalytic activity of CysGA, whereas the mutation of a number of phylogenetically conserved residues within CysGA is detrimental to the transmethylation reaction but does not affect the activity of CysGB. Further studies have shown that CysGB is not essential for cobalamin biosynthesis because the presence of the Salmonella typhimurium CobI operon with either cysGA or the Pseudomonas denitrificans cobA are sufficient for the synthesis of cobyric acid in an E. coli cysG deletion strain. Evidence is also presented to suggest that a gene within the S. typhimurium CobI operon might act as a chelatase that, at low levels of cobalt, is able to aid in the synthesis of sirohaem.
机译:大肠杆菌CysG蛋白(sirohaem合酶)催化将尿卟啉原III转化为sirohaem所需的四个独立反应,首先是在2和7位通过C端介导的两个S-腺苷-1-甲硫氨酸依赖性甲基转移,蛋白质的催化结构域,即CysGA或CysGA,随后通过酶的N末端或CysGB催化结构域介导的铁螯合和脱氢。该报告描述了位于N端前35个残基内的CysG的NAD +结合位点的缺失如何损害CysGB的活性,但不影响CysGA的催化活性,而许多突变CysGA中系统发育上保守的残基的残基不利于转甲基化反应,但不影响CysGB的活性。进一步的研究表明,CysGB对钴胺素的生物合成不是必需的,因为鼠伤寒沙门氏菌CobI操纵子与cysGA或反硝化假单胞菌cobA的存在足以在大肠杆菌cysG缺失菌株中合成cobyric酸。还提供了证据表明鼠伤寒沙门氏菌CobI操纵子中的一个基因可能充当螯合酶,在钴含量低的情况下,该酶可以帮助合成西罗海姆。

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