Frank S, Brindley A A, Deery E, Heathcote P, Lawrence A D, Leech H K, Pickersgill R W, Warren M J
School of Biological Sciences, Queen Mary, University of London, Mile End Road, London E1 4NS, UK.
Biochem Soc Trans. 2005 Aug;33(Pt 4):811-4. doi: 10.1042/BST0330811.
The anaerobic biosynthesis of vitamin B12 is slowly being unravelled. Recent work has shown that the first committed step along the anaerobic route involves the sirohydrochlorin (chelation of cobalt into factor II). The following enzyme in the pathway, CbiL, methylates cobalt-factor II to give cobalt-factor III. Recent progress on the molecular characterization of this enzyme has given a greater insight into its mode of action and specificity. Structural studies are being used to provide insights into how aspects of this highly complex biosynthetic pathway may have evolved. Between cobalt-factor III and cobyrinic acid, only one further intermediate has been identified. A combination of molecular genetics, recombinant DNA technology and bioorganic chemistry has led to some recent advances in assigning functions to the enzymes of the anaerobic pathway.
维生素B12的厌氧生物合成过程正逐渐被揭示。最近的研究表明,厌氧途径中的首个关键步骤涉及到尿卟啉原Ⅲ(钴螯合形成因子Ⅱ)。该途径中的下一种酶CbiL,将钴因子Ⅱ甲基化生成钴因子Ⅲ。近期对这种酶进行分子表征的研究进展,让人们对其作用方式和特异性有了更深入的了解。结构研究有助于深入了解这条高度复杂的生物合成途径的各个方面是如何演化的。在钴因子Ⅲ和钴胺酸之间,仅鉴定出了一种进一步的中间体。分子遗传学、重组DNA技术和生物有机化学的结合,使得在确定厌氧途径中各酶的功能方面取得了一些最新进展。