首页> 美国卫生研究院文献>Wiley-Blackwell Online Open >Cobalamin coenzyme forms are not likely to be superior to cyano- and hydroxyl-cobalamin in prevention or treatment of cobalamin deficiency
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Cobalamin coenzyme forms are not likely to be superior to cyano- and hydroxyl-cobalamin in prevention or treatment of cobalamin deficiency

机译:在预防或治疗钴胺素缺乏症中钴胺素辅酶形式不太可能优于氰基和羟基钴胺素

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摘要

Methylcobalamin (MeCbl) and adenosylcobalamin (AdoCbl) are coenzymes for methionine synthase and methylmalonyl-CoA mutase, respectively. Hydroxylcobalamin (HOCbl) and cyanocobalamin (CNCbl) are frequently used for supplementation. MeCbl and AdoCbl have recently emerged as alternative forms in supplements. In the light of metabolic transformation of Cbl into its cofactor forms, this review discusses current evidence on efficacy and utility of different Cbl forms in preventing or treating Cbl deficiency. Cbl-transporting proteins bind and mediate the uptake of all aforementioned forms of Cbl. After internalization and lysosomal release, Cbl binds to the cytosolic chaperon MMACHC that is responsible for (i) flavin-dependent decyanation of [CN-Co3+]Cbl to [Co2+]Cbl; (ii) glutathione-dependent dealkylation of MeCbl and AdoCbl to [Co2+/1+]Cbl; and (iii) glutathione-dependent decyanation of CNCbl or reduction of HOCbl under anaerobic conditions. MMACHC shows a broad specificity for Cbl forms and supplies the Cbl2+ intermediate for synthesis of MeCbl and AdoCbl. Cobalamin chemistry, physiology, and biochemistry suggest that MeCbl and AdoCbl follow the same route of intracellular processing as CNCbl does. We conclude that supplementing MeCbl or AdoCbl is unlikely to be advantageous compared to CNCbl. On the other hand, there are obvious advantages of high parenteral doses (1–2 mg) of HOCbl in treating inborn errors of Cbl metabolism.
机译:甲基钴胺素(MeCbl)和腺苷钴胺素(AdoCbl)分别是蛋氨酸合酶和甲基丙二酰辅酶A突变酶的辅酶。羟钴胺素(HOCbl)和氰钴胺素(CNCbl)经常用于补充。 MeCbl和AdoCbl最近作为补充剂的替代形式出现。根据Cbl代谢转化为其辅助因子的形式,本综述讨论了有关不同Cbl形式预防或治疗Cbl缺乏症的功效和实用性的当前证据。 Cbl转运蛋白结合并介导所有上述形式的Cbl的摄取。内在化和溶酶体释放后,Cbl与胞质伴侣MMACHC结合,后者负责(i)[CN-Co 3 + ] Cbl的黄素依赖性脱氰反应成[Co 2 + ] Cbl; (ii)MeCbl和AdoCbl的谷胱甘肽依赖性脱烷基为[Co 2 + / 1 + ] Cbl; (iii)在厌氧条件下谷胱甘肽依赖性的CNCbl的脱氰或HOCbl的还原。 MMACHC对Cbl形式表现出广泛的特异性,并为合成MeCbl和AdoCbl提供了Cbl 2 + 中间体。钴胺素的化学,生理学和生物化学表明,MeCbl和AdoCbl遵循与CNCbl相同的细胞内加工途径。我们得出结论,与CNCbl相比,补充MeCbl或AdoCbl不太可能具有优势。另一方面,高肠胃外剂量(1-2 mg)HOCbl在治疗先天性Cbl代谢错误方面有明显的优势。

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