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乳酸乳球菌中一种氯离子诱导的耐酸机制及其调控

A chloride-inducible acid resistance mechanism in Lactococcus lactis and its regulation.

作者信息

Sanders J W, Leenhouts K, Burghoorn J, Brands J R, Venema G, Kok J

机构信息

Department of Genetics, Groningen Biomolecular Sciences and Biotechnology Institute, University of Groningen, Haren, The Netherlands.

出版信息

Mol Microbiol. 1998 Jan;27(2):299-310. doi: 10.1046/j.1365-2958.1998.00676.x.

Abstract

Previously, a promoter was identified in Lactococcus lactis that is specifically induced by chloride. Here, we describe the nucleotide sequence and functional analysis of two genes transcribed from this promoter, gadC and gadB. GadC is homologous to putative glutamate-gamma-aminobutyrate antiporters of Escherichia coli and Shigella flexneri and contains 12 putative membrane-spanning domains. GadB shows similarity to glutamate decarboxylases. A L. lactis gadB mutant and a strain that is unable to express both gadB and gadC was more sensitive to low pH than the wild type when NaCl and glutamate were present. Expression of gadCB in L. lactis in the presence of chloride was increased when the culture pH was allowed to decrease to low levels by omitting buffer from the medium, while glutamate also stimulated gadCB expression. Apparently, these genes encode a glutamate-dependent acid resistance mechanism of L. lactis that is optimally active under conditions in which it is needed to maintain viability. Immediately upstream of the chloride-dependent gadCB promoter Pgad, a third gene encodes a protein (GadR) that is homologous to the activator Rgg from Streptococcus gordonii. gadR expression is chloride and glutamate independent. A gadR mutant did not produce the 3kb gadCB mRNA that is found in wild-type cells in the presence of NaCl, indicating that GadR is an activator of the gadCB operon.

摘要

此前,在乳酸乳球菌中鉴定出一个由氯化物特异性诱导的启动子。在此,我们描述了从该启动子转录的两个基因gadC和gadB的核苷酸序列及功能分析。GadC与大肠杆菌和福氏志贺氏菌假定的谷氨酸 - γ - 氨基丁酸反向转运体同源,含有12个假定的跨膜结构域。GadB与谷氨酸脱羧酶相似。当存在氯化钠和谷氨酸时,乳酸乳球菌gadB突变体以及无法表达gadB和gadC的菌株比野生型对低pH更敏感。当通过从培养基中省略缓冲液使培养物pH降至低水平时,在氯化物存在下乳酸乳球菌中gadCB的表达增加,而谷氨酸也刺激gadCB表达。显然,这些基因编码乳酸乳球菌的一种依赖谷氨酸的耐酸机制,该机制在维持生存力所需的条件下具有最佳活性。在依赖氯化物的gadCB启动子Pgad的紧邻上游,第三个基因编码一种与戈登氏链球菌的激活剂Rgg同源的蛋白质(GadR)。gadR的表达不依赖于氯化物和谷氨酸。gadR突变体不产生在野生型细胞中存在氯化钠时发现的3kb gadCB mRNA,表明GadR是gadCB操纵子的激活剂。

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