Dover N, Higgins C F, Carmel O, Rimon A, Pinner E, Padan E
Division of Microbial and Molecular Ecology, Institute of Life Sciences, Hebrew University of Jerusalem, Israel.
J Bacteriol. 1996 Nov;178(22):6508-17. doi: 10.1128/jb.178.22.6508-6517.1996.
nhaA encodes an Na+/H+ antiporter in Escherichia coli which is essential for adaptation to high salinity and alkaline pH in the presence of Na+. We used Northern (RNA) analysis to measure directly the cellular levels of nhaA mRNA. NhaR belongs to the LysR family of regulatory proteins. Consistent with our previous data with an nhaA'-'lacZ fusion, NhaR was found to be a positive regulator and Na+ was found to be a specific inducer of nhaA transcription. In the nhaA'-'lacZ fusion, maximal induction was observed at alkaline pH. In contrast, in the nhaA+ strain both the level of nhaA expression and the induction ratio were lower at alkaline pH. This difference may be due to the activity of NhaA in the wild-type strain as NhaA efficiently excreted Na+ at alkaline pH and reduced the intracellular concentration of Na+, the signal for induction. We also showed that although the global regulator rpoS was not involved in nhaA regulation, the global regulator hns played a role. Thus, the expression of nhaA'-'lacZ was derepressed in strains bearing hns mutations and transformation with a low-copy-number plasmid carrying hns repressed expression and restored Na+ induction. The derepression in hns strains was nhaR independent. Most interestingly, multicopy nhaR, which in an hns+ background acted only as an Na+-dependent positive regulator, acted as a repressor in an hns strain in the absence of Na+ but was activated in the presence of the ion. Hence, an interplay between nhaR and hns in the regulation of nhaA was suggested.
nhaA在大肠杆菌中编码一种Na⁺/H⁺逆向转运蛋白,在有Na⁺存在的情况下,该蛋白对于适应高盐度和碱性pH至关重要。我们使用Northern(RNA)分析直接测量nhaA mRNA的细胞水平。NhaR属于LysR家族调控蛋白。与我们之前使用nhaA'-'lacZ融合体得到的数据一致,发现NhaR是一种正调控因子,且Na⁺是nhaA转录的特异性诱导剂。在nhaA'-'lacZ融合体中,在碱性pH下观察到最大诱导。相比之下,在nhaA⁺菌株中,碱性pH下nhaA的表达水平和诱导率都较低。这种差异可能是由于野生型菌株中NhaA的活性,因为NhaA在碱性pH下有效地排出Na⁺并降低了细胞内Na⁺的浓度,而Na⁺是诱导信号。我们还表明,虽然全局调控因子rpoS不参与nhaA的调控,但全局调控因子hns发挥了作用。因此,在携带hns突变的菌株中,nhaA'-'lacZ的表达被去抑制,而用携带hns的低拷贝数质粒转化可抑制表达并恢复Na⁺诱导。hns菌株中的去抑制与NhaR无关。最有趣的是,多拷贝nhaR在hns⁺背景下仅作为一种依赖Na⁺的正调控因子,在没有Na⁺的hns菌株中作为一种阻遏物起作用,但在有离子存在时被激活。因此,提示nhaR和hns在nhaA的调控中存在相互作用。