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鼠伤寒沙门氏菌中的镁转运:mgtA和mgtCB基因座转录的双相镁及时间依赖性

Magnesium transport in Salmonella typhimurium: biphasic magnesium and time dependence of the transcription of the mgtA and mgtCB loci.

作者信息

Tao Tao, Grulich Paul F, Kucharski Lisa M, Smith Ronald L, Maguire Michael E

出版信息

Microbiology (Reading). 1998 Mar;144 ( Pt 3):655-664. doi: 10.1099/00221287-144-3-655.

Abstract

Salmonella typhimurium has three distinct Mg2+ transport systems, the constitutive high-capacity CorA transporter and two P-type ATPases, MgtA and MgtB, whose transcription is repressed by normal concentrations of Mg2+ in the growth medium. The latter Mg(2+)-transporting ATPase is part of a two-gene operon, mgtCB, with mgtC encoding a 23 kDa protein of unknown function. Transcriptional regulation using fusions of the promoter regions of mgtA and mgtCB to luxAB showed a biphasic time and Mg2+ concentration dependence. Between 1 and 6 h after transfer to nitrogen minimal medium containing defined concentrations of Mg2+, transcription increased about 200-fold for mgtCB and up to 400-fold for mgtA, each with a half-maximal dependence on Mg2+ of 0.5 mM. Continued incubation revealed a second phase of increased transcription, up to 2000-fold for mgtCB and up to 10,000-fold for mgtA. This secondary increase occurred between 6 and 9 h after transfer to defined medium for mgtCB but between 12 and 24 h for mgtA and had a distinct half-maximal dependence for Mg2+ of 0.01 mM. A concomitant increase of at least 1000-fold in uptake of cation was seen between 8 and 24 h incubation with either system, showing that the transcriptional increase was followed by functional incorporation of large amounts of the newly synthesized transporter into the membrane. Regulation of transcription by Mg2+ was not dependent on a functional stationary-phase sigma factor encoded by rpoS, but it was dependent on the presence of a functional phoPQ two-component regulatory system. Whereas mgtCB was completely dependent on regulation via phoPQ, the secondary late Mg(2+)-dependent phase of mgtA transcription was still evident in strains carrying a mutation in either phoP or phoQ, albeit substantially diminished. Several divalent cations blocked the early phase of the increase in transcription elicited by the decrease in Mg2+ concentration, including cations that inhibit Mg2+ uptake (Co2+, Ni2+ and Mn2+) and those which do not (Ca2+ and Zn2+). In contrast, the second later phase of the transcriptional increase was not well blocked by any cation except those which inhibit uptake. Overall, the data suggest that at least two distinct mechanisms for transcriptional regulation of the mgtA and mgtCB loci exist.

摘要

鼠伤寒沙门氏菌有三种不同的镁离子转运系统,即组成型高容量的CorA转运体和两种P型ATP酶(MgtA和MgtB),它们的转录在生长培养基中正常浓度的镁离子作用下受到抑制。后一种镁离子转运ATP酶是一个双基因操纵子mgtCB的一部分,其中mgtC编码一种功能未知的23 kDa蛋白质。利用mgtA和mgtCB启动子区域与luxAB的融合进行转录调控,结果显示出双相的时间和镁离子浓度依赖性。在转移到含有特定浓度镁离子的氮源基本培养基后1至6小时内,mgtCB的转录增加约200倍,mgtA的转录增加高达400倍,二者对镁离子的半最大依赖性均为0.5 mM。继续培养显示出转录增加的第二阶段,mgtCB的转录增加高达2000倍,mgtA的转录增加高达10000倍。这种二次增加在转移到特定培养基后,mgtCB在6至9小时出现,而mgtA在12至24小时出现,且对镁离子的明显半最大依赖性为0.01 mM。在与任何一个系统一起孵育8至24小时期间,阳离子摄取量伴随至少1000倍的增加,这表明转录增加之后是大量新合成的转运体功能性地整合到膜中。镁离子对转录的调控不依赖于由rpoS编码的功能性稳定期σ因子,但依赖于功能性phoPQ双组分调控系统的存在。虽然mgtCB完全依赖于通过phoPQ进行调控,但在phoP或phoQ发生突变的菌株中,mgtA转录的后期镁离子依赖性阶段仍然明显,尽管程度大幅降低。几种二价阳离子阻断了镁离子浓度降低引发的转录增加的早期阶段,包括抑制镁离子摄取的阳离子(Co2 +、Ni2 +和Mn2 +)以及不抑制的阳离子(Ca2 +和Zn2 +)。相比之下,转录增加的后期阶段除了那些抑制摄取的阳离子外,没有被其他阳离子很好地阻断。总体而言,数据表明mgtA和mgtCB基因座的转录调控至少存在两种不同的机制。

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