Shinar H, Navon G
Eur J Biochem. 1979 Jan 15;93(2):313-22. doi: 10.1111/j.1432-1033.1979.tb12825.x.
Cobalt(III)bovine carbonic anhydrase B was prepared by the oxidation of the cobalt(II) enzyme with hydrogen peroxide and was purified by affinity chromatography. The oxidation reaction is inhibited by specific inhibitors of carbonic anhydrase. The inhibition is explained by the fact that the Co(II)-enzyme . inhibitor complex cannot be directly oxidized by hydrogen peroxide, but has to dissociate to give free Co(II) enzyme which is then oxidized. The Co(III) ion in Co(III) carbonic anhydrase cannot be directly substituted by zinc ions. It can be reduced by either dithionite or BH-4 ions to give, first, their complexes with the Co(II) enzyme, and upon their removal, a fully active Co(II) enzyme. Cyanide and azide bind to cobalt(III) carbonic anhydrase with similar rate constants of 0.060 +/- 0.005 and 0.070 +/- 0.007 M-1 S-1 respectively. These rates are faster than those found for Co(III) inorganic complexes. The Co(III) ion in both Co(III) carbonic anhydrase and Co(III) carboxypeptidase A was found to be diamagnetic, indicating a near octahedral symmetry.
通过用过氧化氢氧化钴(II)酶制备了钴(III)牛碳酸酐酶B,并通过亲和色谱法进行纯化。氧化反应受到碳酸酐酶特异性抑制剂的抑制。这种抑制作用的解释是,钴(II)-酶·抑制剂复合物不能被过氧化氢直接氧化,而是必须解离以产生游离的钴(II)酶,然后再被氧化。钴(III)碳酸酐酶中的钴(III)离子不能被锌离子直接取代。它可以被连二亚硫酸盐或硼氢化根离子还原,首先生成它们与钴(II)酶的复合物,去除这些复合物后,得到完全活性的钴(II)酶。氰化物和叠氮化物分别以0.060±0.005和0.070±0.007 M-1 S-1的相似速率常数与钴(III)碳酸酐酶结合。这些速率比钴(III)无机配合物的速率快。发现钴(III)碳酸酐酶和钴(III)羧肽酶A中的钴(III)离子都是抗磁性的,表明其具有接近八面体的对称性。