首页> 外文期刊>Journal of bacteriology >Regulation and Activity of a Zinc Uptake Regulator, Zur, in Corynebacterium diphtheriae
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Regulation and Activity of a Zinc Uptake Regulator, Zur, in Corynebacterium diphtheriae

机译:白喉棒状杆菌中锌吸收调节剂Zur的调节和活性

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Regulation of metal ion homeostasis is essential to bacterial cell survival, and in most species it is controlled by metal-dependent transcriptional regulators. In this study, we describe a Corynebacterium diphtheriae ferric uptake regulator-family protein, Zur, that controls expression of genes involved in zinc uptake. By measuring promoter activities and mRNA levels, we demonstrate that Zur represses transcription of three genes (zrg, cmrA, and troA) in zinc-replete conditions. All three of these genes have similarity to genes involved in zinc uptake. Transcription of zrg and cmrA was also shown to be regulated in response to iron and manganese, respectively, by mechanisms that are independent of Zur. We demonstrate that the activity of the zur promoter is slightly decreased under low zinc conditions in a process that is dependent on Zur itself. This regulation of zur transcription is distinctive and has not yet been described for any other zur. An adjacent gene, predicted to encode a metal-dependent transcriptional regulator in the ArsR/SmtB family, is transcribed from a separate promoter whose activity is unaffected by Zur. A C. diphtheriae zur mutant was more sensitive to peroxide stress, which suggests that zur has a role in protecting the bacterium from oxidative damage. Our studies provide the first evidence of a zinc specific transcriptional regulator in C. diphtheriae and give new insights into the intricate regulatory network responsible for regulating metal ion concentrations in this toxigenic human pathogen.
机译:金属离子稳态的调节对于细菌细胞的存活至关重要,在大多数物种中,它是由金属依赖性转录调节剂控制的。在这项研究中,我们描述了白喉棒状杆菌铁摄取调节剂家族蛋白Zur,它控制参与锌摄取的基因的表达。通过测量启动子活性和mRNA水平,我们证明Zur抑制了锌充足的三个基因( zrg cmrA troA )的转录条件。这三个基因都与参与锌吸收的基因相似。还显示了 zrg cmrA 的转录分别受铁和锰的影响,其转录机制独立于Zur。我们证明 zur 启动子的活性在低锌条件下在依赖于Zur自身的过程中略有降低。 zur 转录的这种调节是独特的,尚未针对任何其他 zur 进行描述。从一个单独的启动子转录一个相邻的基因,该基因预计会编码ArsR / SmtB家族中的金属依赖性转录调节子,其活性不受Zur的影响。 C。白喉zur 突变体对过氧化物胁迫更为敏感,这表明 zur 在保护细菌免受氧化损伤方面具有作用。我们的研究提供了 C中锌特异性转录调节因子的第一个证据。白喉,并为复杂的调控网络提供了新的见解,该复杂的调控网络负责调节这种有毒的人类病原体中的金属离子浓度。

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