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细菌酶系统介导的核糖基和脱氧核糖基转移

Ribosyl and deoxyribosyl transfer by bacterial enzyme systems.

作者信息

Imada A, Igarasi S

出版信息

J Bacteriol. 1967 Nov;94(5):1551-9. doi: 10.1128/jb.94.5.1551-1559.1967.

Abstract

The enzymatic transfer of ribose and deoxyribose residues in pyrimidine nucleosides to purines was catalyzed by cell-free extracts of various bacteria. Almost all the strains belonging to Enterobacteriaceae were capable of catalyzing the transfer reactions. The transfer activities were also detected among some bacterial strains of other families: Pseudomonadaceae, Corynebacteriaceae, Micrococcaceae, Bacteriaceae, and Bacillaceae. The rates of the transfer reactions were greatly enhanced in the presence of phosphate ion, and the participation of nucleoside phosphorylases in the reactions was suggested. Uridine phosphorylase, thymidine phosphorylase, and purine nucleoside phosphorylase were purified from cell-free extract of Aerobacter aerogenes IFO 3321. The ribosyl transfer from uridine to hypoxanthine was found to be catalyzed by the coupled reactions of uridine and purine nucleoside phosphorylases and the deoxyribosyl transfer from thymidine to hypoxanthine by the coupled reactions of thymidine and purine nucleoside phosphorylases.

摘要

各种细菌的无细胞提取物可催化嘧啶核苷中的核糖和脱氧核糖残基向嘌呤的酶促转移。几乎所有肠杆菌科的菌株都能够催化转移反应。在其他一些菌科的菌株中也检测到了转移活性:假单胞菌科、棒杆菌科、微球菌科、巴氏杆菌科和芽孢杆菌科。在磷酸根离子存在下,转移反应的速率大大提高,提示核苷磷酸化酶参与了反应。从产气气杆菌IFO 3321的无细胞提取物中纯化出尿苷磷酸化酶、胸苷磷酸化酶和嘌呤核苷磷酸化酶。发现尿苷向次黄嘌呤的核糖基转移是由尿苷和嘌呤核苷磷酸化酶的偶联反应催化的,而胸苷向次黄嘌呤的脱氧核糖基转移是由胸苷和嘌呤核苷磷酸化酶的偶联反应催化的。

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