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粪链球菌抗叶酸突变体中的叶酸代谢

FOLIC ACID METABOLISM IN ANTIFOLIC-RESISTANT MUTANTS OF STREPTOCOCCUS FAECALIS.

作者信息

JOHNSON A H, HUTCHISON D J

出版信息

J Bacteriol. 1964 Apr;87(4):786-91. doi: 10.1128/jb.87.4.786-791.1964.

Abstract

Johnson, Alva H. (Sloan-Kettering Institute for Cancer Research, Rye, N.Y.), and Dorris J. Hutchison. Folic acid metabolism in antifolic-resistant mutants of Streptococcus faecalis. J. Bacteriol. 87:786-791. 1964.-Streptococcus faecalis ATCC 8043 and three of its mutants resistant to amethopterin were compared for their quantitative requirements for serine, purines, and thymine; for their quantitative requirements of folic acid (FA) for the synthesis de novo of serine, purines, and thymine; for the susceptibility to amethopterin of each pathway; and for the relative capacity of resting cells of each culture to synthesize N(5)-formyltetrahydrofolate (5-CHOFAH(4)) from FA and serine or FA and formate. The mutants were found to be both qualitatively and quantitatively different from one another and from the wild strain. The growth conditions, specifically the composition of the medium in which each mutant strain was selected, had a marked effect on the metabolic capacities of the mutants. The ability to synthesize serine, purines, and thymine, as observed from the FA requirements, directly reflected the level of resistance of each pathway to amethopterin. The resistant mutants were more efficient than the wild strain in the formation of 5-CHOFAH(4) from FA and formate and, furthermore, this formate activation paralleled their capacities in the synthesis de novo of serine. Alterations in purine and thymine biosyntheses were also observed.

摘要

约翰逊,阿尔瓦·H.(纽约州莱伊市斯隆 - 凯特琳癌症研究所),以及多里斯·J.哈钦森。粪肠球菌抗叶酸突变体中的叶酸代谢。《细菌学杂志》87:786 - 791。1964年。——对粪肠球菌ATCC 8043及其三个对氨甲蝶呤耐药的突变体进行了比较,比较内容包括它们对丝氨酸、嘌呤和胸腺嘧啶的定量需求;它们从头合成丝氨酸、嘌呤和胸腺嘧啶时对叶酸(FA)的定量需求;每条途径对氨甲蝶呤的敏感性;以及每种培养物的静息细胞从FA和丝氨酸或FA和甲酸合成N(5)-甲酰四氢叶酸(5-CHOFAH(4))的相对能力。发现这些突变体在定性和定量方面彼此不同,也与野生菌株不同。生长条件,特别是选择每个突变菌株所用培养基的组成,对突变体的代谢能力有显著影响。从对FA的需求观察到的合成丝氨酸、嘌呤和胸腺嘧啶的能力,直接反映了每条途径对氨甲蝶呤的耐药水平。耐药突变体在从FA和甲酸形成5-CHOFAH(4)方面比野生菌株更有效,此外,这种甲酸激活与其从头合成丝氨酸的能力平行。还观察到嘌呤和胸腺嘧啶生物合成的改变。

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