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二醇脱水酶结合的钴胺素的配体交换反应及核苷结合的影响。

Ligand exchange reactions of diol dehydrase-bound cobalamins and the effect of the nucleoside binding.

作者信息

Toraya T, Watanabe N, Ushio K, Matsumoto T, Fukui S

出版信息

J Biol Chem. 1983 Aug 10;258(15):9296-301.

PMID:6603460
Abstract

The inactive complex of diol dehydrase with hydroxocobalamin was resolved by treatment with SO2-3, followed by dialysis to remove SO2-3, giving the apoenzyme which was reconstitutable into catalytically active holoenzyme upon addition of adenosylcobalamin ("re-activation"). Spectral evidence showed that the enzyme-bound hydroxocobalamin undergoes a Co beta-ligand exchange reaction forming sulfitocobalamin. Sulfitocobalamin was bound to diol dehydrase only loosely, and therefore dissociated from the enzyme. In contrast, neither the enzyme-hydroxocobalamin-5'-deoxyadenosine nor the enzyme-hydroxocobalamin-adenosine complex was resolved and thus re-activated by this procedure. It was shown spectroscopically that the hydroxocobalamin in these complexes does not react with SO2-3, or even with CN-, indicating that the OH group in the Co beta-position was blocked spatially by these enzyme-bound nucleosides. Neither O2-inactivated holoenzyme nor the holoenzyme inactivated suicidally by glycerol or 1,2-ethanediol during dehydration reaction was also re-activated by the same procedure. The complex of the enzyme with cyanocobalamin or methylcobalamin was not resolvable by the SO2-3 treatment. This was because these cobalamins bound to the enzyme were not subject to a ligand exchange reaction with SO2-3.

摘要

二醇脱水酶与羟钴胺素的无活性复合物通过用亚硫酸根处理来解离,随后透析以去除亚硫酸根,得到脱辅基酶,在添加腺苷钴胺素后该脱辅基酶可重新组装成具有催化活性的全酶(“重新激活”)。光谱证据表明,与酶结合的羟钴胺素会发生钴β-配体交换反应,形成亚硫酸钴胺素。亚硫酸钴胺素与二醇脱水酶的结合很松散,因此会从酶上解离。相比之下,酶-羟钴胺素-5'-脱氧腺苷复合物和酶-羟钴胺素-腺苷复合物都不能通过此方法解离并重新激活。光谱显示,这些复合物中的羟钴胺素不与亚硫酸根反应,甚至不与氰根反应,这表明钴β位上的羟基在空间上被这些与酶结合的核苷所阻断。在脱水反应过程中,被氧气灭活的全酶以及被甘油或1,2-乙二醇自杀性灭活的全酶也不能通过相同的方法重新激活。酶与氰钴胺素或甲基钴胺素的复合物不能通过亚硫酸根处理来解离。这是因为与酶结合的这些钴胺素不会与亚硫酸根发生配体交换反应。

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