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枯草芽孢杆菌的染色体tetA(L)基因:tetA(L)缺失菌株的表达调控与生理学研究

Chromosomal tetA(L) gene of Bacillus subtilis: regulation of expression and physiology of a tetA(L) deletion strain.

作者信息

Cheng J, Guffanti A A, Wang W, Krulwich T A, Bechhofer D H

机构信息

Department of Biochemistry, Mount Sinai School of Medicine, City University of New York, New York 10029, USA.

出版信息

J Bacteriol. 1996 May;178(10):2853-60. doi: 10.1128/jb.178.10.2853-2860.1996.

Abstract

Deletion of the tetA(L) chromosomal region of Bacillus subtilis in a strain designated JC112 increased the strain's sensitivity to low tetracycline concentrations. It also resulted in phenotypic changes that correlate with the previously found role of TetA(L) in mediating electrogenic NA+/H+ antiport. Growth of JC112 was impaired relative to that of the wild type at both pH 7.0 and 8.3; Na(+)- and K(+)-dependent pH homeostases were impaired at alkaline pH. The phenotype of JC112 was complemented by plasmid-borne tetA(L) and related tet(K) genes; the antiport activity conferred by the tet(K) gene had an apparently higher preference for K+ over Na+ than that conferred by tetA(L). The data were consistent with TetA(L) being the major Na+(K+)/H+ antiporter involved in pH homeostasis in B. subtilis as well as a significant Na+ extrusion system. The phenotype of JC112 was much more pronounced than that of an earlier transposition mutant, JC111, with a disruption in the putative tetA(L) promoter region. Northern (RNA) blot analysis of tetA(L) RNA from wild-type and JC111 strains revealed the same patterns. That JC111 nevertheless exhibited some Na+ and alkali sensitivity may be accounted for by disruption of regulatory features that, in the wild type, allow increased tetA(L) expression under specific conditions of pH and monovalent cation concentration. Evidence for several different regulatory effects emerged from studies of lacZ expression from the transposon of JC111 and from a tetA(L)-lacZ translational fusion introduced into the amyE locus of wild-type and JC112 strains.

摘要

在一株名为JC112的枯草芽孢杆菌中删除tetA(L)染色体区域,会增加该菌株对低浓度四环素的敏感性。这也导致了表型变化,这些变化与之前发现的TetA(L)在介导电致性Na+/H+反向转运中的作用相关。与野生型相比,JC112在pH 7.0和8.3时的生长均受到损害;在碱性pH条件下,依赖Na+和K+的pH稳态受到损害。携带质粒的tetA(L)和相关tet(K)基因可互补JC112的表型;tet(K)基因赋予的反向转运活性对K+的偏好明显高于tetA(L)赋予的对Na+的偏好。这些数据与TetA(L)是枯草芽孢杆菌中参与pH稳态的主要Na+(K+)/H+反向转运蛋白以及重要的Na+外排系统一致。JC112的表型比早期的转座突变体JC111更为明显,JC111的推定tetA(L)启动子区域发生了破坏。对野生型和JC111菌株的tetA(L) RNA进行Northern(RNA)印迹分析,结果显示出相同的模式。JC111尽管表现出一些Na+和碱敏感性,这可能是由于野生型中在特定pH和单价阳离子浓度条件下允许tetA(L)表达增加的调控特征被破坏所致。对JC111转座子以及导入野生型和JC112菌株amyE位点的tetA(L)-lacZ翻译融合体的lacZ表达研究,得出了几种不同调控效应的证据。

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