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Vitamin B12: Unique Metalorganic Compounds and the Most Complex Vitamins

机译:维生素B12:独特的金属有机化合物和最复杂的维生素

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摘要

The chemistry and biochemistry of the vitamin B12 compounds (cobalamins, XCbl) are described, with particular emphasis on their structural aspects and their relationships with properties and function. A brief history of B12, reveals how much the effort of chemists, biochemists and crystallographers have contributed in the past to understand the basic properties of this very complex vitamin. The properties of the two cobalamins, the two important B12 cofactors Ado- and MeCbl are described, with particular emphasis on how the Co-C bond cleavage is involved in the enzymatic mechanisms. The main structural features of cobalamins are described, with particular reference to the axial fragment. The structure/property relationships in cobalamins are summarized. The recent studies on base-off/base-on equilibrium are emphasized for their relevance to the mode of binding of the cofactor to the protein scaffold. The absorption, transport and cellular uptake of cobalamins and the structure of the B12 transport proteins, IF and TC, in mammals are reviewed. The B12 transport in bacteria and the structure of the so far determined proteins are briefly described. The currently accepted mechanisms for the catalytic cycles of the AdoCbl and MeCbl enzymes are reported. The structure and function of B12 enzymes, particularly the important mammalian enzymes methyltransferase (MetH) and methyl-malonyl-coenzymeA mutase (MMCM), are described and briefly discussed. Since fast proliferating cells require higher amount of vitamin B12 than that required by normal cells, the study of B12 conjugates as targeting agents has recently gained importance. Bioconjugates have been studied as potential agents for delivering radioisotopes and NMR probes or as various cytotoxic agents towards cancer cells in humans and the most recent studies are described. Specifically, functionalized bioconjugates are used as “Trojan horses” to carry into the cell the appropriate antitumour or diagnostic label. Possible future developments of B12 work are summarized.
机译:描述了维生素B12化合物(钴胺素,XCbl)的化学和生物化学,尤其着重于它们的结构方面及其与性质和功能的关系。 B12的简要历史揭示了化学家,生物化学家和晶体学家过去为了解这种非常复杂的维生素的基本特性做出了巨大的贡献。描述了两种钴胺素,两种重要的B12辅因子Ado-和MeCbl的特性,并特别强调了Co-C键的裂解如何参与酶促机制。描述了钴胺素的主要结构特征,特别是参考轴向片段。总结了钴胺素的结构/性质关系。强调了最近对碱基平衡/碱基平衡的研究,因为它们与辅因子与蛋白质支架的结合方式有关。综述了钴胺素在哺乳动物中的吸收,转运和细胞摄取以及B12转运蛋白IF和TC的结构。简要描述了细菌中的B12转运和迄今为止确定的蛋白质的结构。报道了目前公认的AdoCbl和MeCbl酶催化循环的机理。 B12酶的结构和功能,特别是重要的哺乳动物酶甲基转移酶(MetH)和甲基丙二酰辅酶A突变酶(MMCM),已得到描述和简要讨论。由于快速增殖的细胞比正常细胞需要更多的维生素B12,因此B12结合物作为靶向药物的研究近来变得越来越重要。已经研究了生物缀合物作为用于向人类癌细胞传递放射性同位素和NMR探针的潜在试剂或作为各种细胞毒性剂,并且描述了最新的研究。具体而言,将功能化的生物缀合物用作“特洛伊木马”,以将适当的抗肿瘤或诊断标记物带入细胞。总结了B12工作的未来可能发展。

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