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变形链球菌膜结合质子转运ATP酶操纵子的克隆与核苷酸序列分析

Cloning and nucleotide sequence analysis of the Streptococcus mutans membrane-bound, proton-translocating ATPase operon.

作者信息

Smith A J, Quivey R G, Faustoferri R C

机构信息

Department of Dental Research, School of Medicine and Dentistry, University of Rochester, NY 14642, USA.

出版信息

Gene. 1996 Dec 12;183(1-2):87-96. doi: 10.1016/s0378-1119(96)00502-1.

Abstract

The function of the membrane-bound ATPase in S. mutans is to regulate cytoplasmic pH values for the purpose of maintaining delta pH. Previous studies have shown that as part of its acid-adaptive ability, S. mutans is able to increase H(+)-ATPase levels in response to acidification. As part of the study of ATPase regulation in S. mutans, we have cloned the ATPase operon and determined its genetic organization. The structural genes from S. mutans were found to be in the order: c, a, b, delta, alpha, gamma, beta, and epsilon; where c and a were reversed from the more typical bacterial organization. The operon contained no I gene homologue but was preceded by a 239-bp intergenic space. Deduced aa sequences from open reading frames indicated that genes encoding homologues of glycogen phosphorylase and nonphosphorylating, NADP-dependent glyceraldehyde-3-phosphate dehydrogenase flank the H(+)-ATPase operon, 5' and 3' respectively. Sequence analysis indicated the presence of three inverted-repeat nt sequences in the glgP-uncE intergenic space. Primer extension analysis of mRNAs prepared from batch-grown or steady-state cultures demonstrated that the transcriptional start site did not change as a function of culture pH value. The data suggest that potential stem-and-loop structures in the promoter region of the operon do not function to alter the starting position of ATPase-specific mRNA transcription.

摘要

变形链球菌中膜结合ATP酶的功能是调节细胞质pH值以维持质子动力势。先前的研究表明,作为其酸适应性能力的一部分,变形链球菌能够在酸化反应中提高H(+)-ATP酶水平。作为对变形链球菌中ATP酶调节研究的一部分,我们克隆了ATP酶操纵子并确定了其基因组织。发现变形链球菌的结构基因顺序为:c、a、b、δ、α、γ、β和ε;其中c和a与更典型的细菌组织顺序相反。该操纵子不含I基因同源物,但在其之前有一个239 bp的基因间间隔区。从开放阅读框推导的氨基酸序列表明,分别在H(+)-ATP酶操纵子的5'和3'侧翼存在编码糖原磷酸化酶和非磷酸化、NADP依赖性甘油醛-3-磷酸脱氢酶同源物的基因。序列分析表明在glgP-uncE基因间间隔区存在三个反向重复核苷酸序列。对分批培养或稳态培养制备的mRNA进行引物延伸分析表明,转录起始位点不会随培养pH值而变化。数据表明,操纵子启动子区域潜在的茎环结构不会改变ATP酶特异性mRNA转录的起始位置。

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