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巨大芽孢杆菌钴胺素生物合成缺陷型突变体的分离与遗传特征分析

Isolation and genetic characterizations of Bacillus megaterium cobalamin biosynthesis-deficient mutants.

作者信息

Wolf J B, Brey R N

出版信息

J Bacteriol. 1986 Apr;166(1):51-8. doi: 10.1128/jb.166.1.51-58.1986.

DOI:10.1128/jb.166.1.51-58.1986
PMID:3082859
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC214555/
Abstract

Ethanolamine is deaminated by the action of ethanolamine ammonia-lyase (EC 4.3.1.7), an adenosylcobalamin-dependent enzyme. Consequently, to grow on ethanolamine as a sole nitrogen source, Bacillus megaterium requires vitamin B12. Identification of B. megaterium mutants deficient for growth on ethanolamine as the sole nitrogen source yielded a total of 34 vitamin B12 auxotrophs. The vitamin B12 auxotrophs were divided into two major phenotypic groups: Cob mutants, which could use cobinamide or vitamin B12 to grow on ethanolamine, and Cbl mutants, which could be supplemented only by vitamin B12. The Cob mutants were resolved into six classes and the Cbl mutants were resolved into three, based on the spectrum of cobalt-labeled corrinoid compounds which they accumulated. Although some radiolabeled cobalamin was detected in the wild type, little or none was evident in the auxotrophs. The results indicate that Cob mutants contain lesions in biosynthetic steps before the synthesis of combinamide, while Cbl mutants are defective in the conversion of cobinamide to cobalamin. Analysis of phage-mediated transduction experiments revealed tight genetic linkage within the Cob class and within the Cbl class. Similar transduction analysis indicated the Cob and Cbl classes are weakly linked. In addition, cross-feeding experiments in which extracts prepared from mutants were examined for their effect on growth of various other mutants allowed a partial ordering of mutations within the cobalamin biosynthetic pathway.

摘要

乙醇胺在乙醇胺氨裂解酶(EC 4.3.1.7)的作用下发生脱氨反应,该酶依赖腺苷钴胺素。因此,巨大芽孢杆菌要以乙醇胺作为唯一氮源生长,就需要维生素B12。对在以乙醇胺作为唯一氮源时生长缺陷的巨大芽孢杆菌突变体进行鉴定,共得到34个维生素B12营养缺陷型菌株。这些维生素B12营养缺陷型菌株分为两个主要表型组:Cob突变体,其可以利用钴胺酰胺或维生素B12在乙醇胺上生长;Cbl突变体,其只能用维生素B12进行补充。根据它们积累的钴标记类咕啉化合物的谱图,Cob突变体可分为六类,Cbl突变体可分为三类。虽然在野生型中检测到了一些放射性标记的钴胺素,但在营养缺陷型中几乎没有或根本没有明显的放射性标记。结果表明,Cob突变体在合成钴胺酰胺之前的生物合成步骤中存在缺陷,而Cbl突变体在钴胺酰胺转化为钴胺素的过程中存在缺陷。对噬菌体介导的转导实验的分析表明,Cob类和Cbl类内部存在紧密的遗传连锁。类似的转导分析表明,Cob类和Cbl类之间的连锁较弱。此外,通过交叉饲养实验,检测突变体提取物对其他各种突变体生长的影响,从而对钴胺素生物合成途径中的突变进行了部分排序。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/68fc/214555/82a8f16837c9/jbacter00209-0062-b.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/68fc/214555/4ea7bd06b965/jbacter00209-0062-a.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/68fc/214555/82a8f16837c9/jbacter00209-0062-b.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/68fc/214555/4ea7bd06b965/jbacter00209-0062-a.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/68fc/214555/82a8f16837c9/jbacter00209-0062-b.jpg

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