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有机卤呼吸细菌多食硫螺旋菌:不寻常钴胺素的天然来源。

The organohalide-respiring bacterium Sulfurospirillum multivorans: a natural source for unusual cobamides.

作者信息

Schubert Torsten

机构信息

Department of Applied and Ecological Microbiology, Institute of Microbiology, Friedrich Schiller University, Philosophenweg 12, 07743, Jena, Germany.

出版信息

World J Microbiol Biotechnol. 2017 May;33(5):93. doi: 10.1007/s11274-017-2258-x. Epub 2017 Apr 10.

Abstract

Cobamides ('complete' corrinoids) are essential for organohalide-respiring bacteria because they act as cofactors of reductive dehalogenases (RDases). RDases are the key enzymes in organohalide respiration, a process relevant for environmental remediation. More than a decade ago, the unusual norpseudo-B was identified as cofactor of the tetrachloroethene RDase (PceA) purified from the epsilonproteobacterium Sulfurospirillum multivorans. Since then, the question was raised whether or not the production of the uncommon cobamide is a specific adaptation to the requirements of PceA. Recently, efforts were made to unravel variations in the cobamide biosynthetic pathway, which lead to the production of the structurally unique norpseudo-B. The acquisition of genomic and proteomic data together with structural analyses of PceA provided insights into norcobamide formation and utilization. By the use of guided biosynthesis, S. multivorans was shown to be an effective cobamide producer capable of generating unusual norcobamides either functional or non-functional as cofactors of PceA. The organism turned out to be a suitable tool for testing the impact of cobamide structure on enzyme function. The results summarized here highlight S. multivorans in particular and the organohalide-respiring bacteria in general as a resource for new discoveries on cobamide diversity and utilization.

摘要

钴胺素(“完整”类咕啉)对于有机卤呼吸细菌至关重要,因为它们作为还原脱卤酶(RDases)的辅因子发挥作用。RDases是有机卤呼吸中的关键酶,这一过程与环境修复相关。十多年前,异常的去甲伪维生素B被鉴定为从ε-变形菌多硫螺旋菌中纯化出的四氯乙烯RDase(PceA)的辅因子。从那时起,就有人提出这种不常见的钴胺素的产生是否是对PceA需求的一种特殊适应。最近,人们努力揭示钴胺素生物合成途径中的变异,这些变异导致了结构独特的去甲伪维生素B的产生。基因组和蛋白质组数据的获取以及PceA的结构分析为去甲钴胺素的形成和利用提供了见解。通过使用定向生物合成,多硫螺旋菌被证明是一种有效的钴胺素生产者,能够产生作为PceA辅因子的功能性或非功能性的异常去甲钴胺素。该生物体被证明是测试钴胺素结构对酶功能影响的合适工具。这里总结的结果突出了多硫螺旋菌,特别是有机卤呼吸细菌,作为钴胺素多样性和利用新发现资源的重要性。

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