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维生素B12的生物合成:反硝化假单胞菌中的一种酶催化钴啉酸a,c-二酰胺的羧基b、d、e和g逐步酰胺化。

Biosynthesis of vitamin B12: stepwise amidation of carboxyl groups b, d, e, and g of cobyrinic acid a,c-diamide is catalyzed by one enzyme in Pseudomonas denitrificans.

作者信息

Blanche F, Couder M, Debussche L, Thibaut D, Cameron B, Crouzet J

机构信息

Département Analyse, Institut des Biotechnologies, Vitry-sur-Seine, France.

出版信息

J Bacteriol. 1991 Oct;173(19):6046-51. doi: 10.1128/jb.173.19.6046-6051.1991.

Abstract

The cobalamin biosynthetic pathway enzyme that catalyzes amidation of 5'-deoxy-5'-adenosyl-cobyrinic acid a,c-diamide was purified to homogeneity from extracts of a recombinant strain of Pseudomonas denitrificans by a four-column procedure. The purified protein had an isoelectric point of 5.6 and molecular weights of 97,300 as estimated by gel filtration and 57,000 as estimated by gel electrophoresis under denaturing conditions, suggesting that the active enzyme is a homodimer. Stepwise Edman degradation provided the sequence of the first 16 amino acid residues at the N terminus. The enzyme catalyzed the four-step amidation sequence from cobyrinic acid a,c-diamide to cobyric acid via the formation of cobyrinic acid triamide, tetraamide, and pentaamide intermediates. The amidations are carried out in a specific order; this order was not determined. The enzyme was specific to coenzyme forms of substrates and did not carry out amidation of the carboxyl group at position f. The amidation reactions were ATP/Mg2+ dependent and exhibited a broad optimum around pH 7.5. L-Glutamine was shown to be the preferred amide group donor (Km congruent to 45 microM) but could be replaced by ammonia (Km = 20 mM). For all of the four partially amidated substrates, the Km values were in the micromolar range and the Vmax values were about 7,000 nmol h-1 mg-1.

摘要

通过四步柱层析法从反硝化假单胞菌重组菌株的提取物中纯化出催化5'-脱氧-5'-腺苷-钴胺酸a,c-二酰胺酰胺化反应的钴胺素生物合成途径酶,使其达到同质状态。纯化后的蛋白质等电点为5.6,凝胶过滤法估算的分子量为97,300,变性条件下凝胶电泳法估算的分子量为57,000,这表明活性酶是一种同型二聚体。逐步进行的埃德曼降解法确定了N端前16个氨基酸残基的序列。该酶催化了从钴胺酸a,c-二酰胺到钴胺酸的四步酰胺化反应序列,反应过程中形成了钴胺酸三酰胺、四酰胺和五酰胺中间体。酰胺化反应按特定顺序进行,但该顺序尚未确定。该酶对底物的辅酶形式具有特异性,不会对f位的羧基进行酰胺化反应。酰胺化反应依赖ATP/Mg2+,在pH 7.5左右呈现出较宽的最佳反应范围。L-谷氨酰胺被证明是首选的酰胺基团供体(Km约为45 microM),但也可用氨(Km = 20 mM)替代。对于所有四种部分酰胺化的底物,Km值处于微摩尔范围内,Vmax值约为7,000 nmol h-1 mg-1。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8ce6/208350/7ba92b57acc0/jbacter00109-0125-a.jpg

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