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The Zinc-Responsive Regulon of Neisseria meningitidis Comprises 17 Genes under Control of a Zur Element

机译:脑膜炎奈瑟氏球菌的锌反应性调节子包含Zur元件控制下的17个基因

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摘要

Zinc is a bivalent cation essential for bacterial growth and metabolism. The human pathogen Neisseria meningitidis expresses a homologue of the Zinc uptake regulator Zur, which has been postulated to repress the putative zinc uptake protein ZnuD. In this study, we elucidated the transcriptome of meningococci in response to zinc by microarrays and quantitative real-time PCR (qRT-PCR). We identified 15 genes that were repressed and two genes that were activated upon zinc addition. All transcription units (genes and operons) harbored a putative Zur binding motif in their promoter regions. A meningococcal Zur binding consensus motif (Zur box) was deduced in silico, which harbors a conserved central palindrome consisting of hexameric inverted repeats separated by three nucleotides (TGTTATDNHATAACA). In vitro binding of recombinant meningococcal Zur to this Zur box was shown for the first time using electrophoretic mobility shift assays. Zur binding to DNA depended specifically on the presence of zinc and was sensitive to mutations in the palindromic sequence. The Zur regulon among genes of unknown function comprised genes involved in zinc uptake, tRNA modification, and ribosomal assembly. In summary, this is the first study of the transcriptional response to zinc in meningococci.
机译:锌是细菌生长和代谢必不可少的二价阳离子。人类病原体脑膜炎奈瑟氏球菌表达锌摄取调节剂Zur的同系物,推测它可以抑制假定的锌摄取蛋白ZnuD。在这项研究中,我们通过微阵列和实时定量PCR(qRT-PCR)阐明了脑膜炎球菌对锌的转录组。我们鉴定了15个被抑制的基因和两个在添加锌后被激活的基因。所有的转录单位(基因和操纵子)在其启动子区域都带有一个假定的Zur结合基序。在计算机上推导了脑膜炎球菌Zur结合共有基序(Zur框),该基序包含一个保守的中央回文集,该回文集由被三个核苷酸(TGTTATDNHATAAAACA)分隔的六聚体反向重复组成。重组脑膜炎球菌Zur与该Zur盒的体外结合首次使用电泳迁移率变动分析法进行显示。 Zur与DNA的结合特别取决于锌的存在,并且对回文序列中的突变敏感。功能未知的基因中的Zur regulon包括参与锌摄取,tRNA修饰和核糖体装配的基因。总之,这是脑膜炎球菌对锌的转录反应的首次研究。

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