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[ptsI基因和ptsH基因剂量对大肠杆菌K-12碳水化合物转运及乳糖操纵子活性调控的影响]

[Effect of the dose of ptsI- and ptsH-genes on carbohydrate transport and regulation of lac-operon activity in Escherichia coli K-12].

作者信息

Gershanovich V N, Umiarov A M, Il'ina T S, Burd G I, Bol'shakova T N

出版信息

Genetika. 1979;15(1):32-40.

PMID:160355
Abstract

Phage Mu-1 cts61 was used for transposition of pts1 and ptsH genes. The received F'-factors AUF2 and AUF3 carry short fragments of the bacterial chromosome. Merodiploid strains with double pts genes were selected in sexduction crosses with the appropriate recA recipients. Effect of the gene dose was not registered in pts+/pts+ strains in the case of accumulation of the substrates of the phosphoenolpyruvate-dependent phosphotransferase system (PTS) and in the case of bacterial growth in the presence of these carbohydrates. This indicates that the enzyme (enzymes) II of the PTS is the limiting step in the transpost process. Induction of beta-galactosidase and the growth on carbohydrates not transported via the PTS (maltose, lactose) were greatly reduced in pts mutant. Introduction of the pts+ allele with episome lead to the restoration of the two above processes. These data show that the phospho approximately HPr generating system of the PTS is directly (or in indirect manner) involved in the regulation of catabolite-sensitive operons. Glucose repression was markedly increased in pts+/pts+ merodiploids as compared with pts+/pts- ones and with pts+ bacteria. Possible mechanisms of this effect are discussed.

摘要

噬菌体Mu-1 cts61用于pts1和ptsH基因的转座。获得的F'-因子AUF2和AUF3携带细菌染色体的短片段。在与合适的recA受体进行性导杂交中,选择具有双pts基因的部分二倍体菌株。在磷酸烯醇丙酮酸依赖性磷酸转移酶系统(PTS)底物积累的情况下以及在这些碳水化合物存在下细菌生长的情况下,在pts+/pts+菌株中未检测到基因剂量的影响。这表明PTS的酶II是转座过程中的限制步骤。在pts突变体中,β-半乳糖苷酶的诱导以及在非通过PTS转运的碳水化合物(麦芽糖、乳糖)上的生长大大降低。用附加体导入pts+等位基因导致上述两个过程的恢复。这些数据表明,PTS的磷酸化近似HPr生成系统直接(或以间接方式)参与分解代谢敏感操纵子的调控。与pts+/pts-菌株和pts+细菌相比,pts+/pts+部分二倍体中的葡萄糖阻遏明显增加。讨论了这种效应的可能机制。

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