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嗜金属贪铜菌的质粒pMOL28和pMOL30专门用于对重金属的最大存活反应。

Plasmids pMOL28 and pMOL30 of Cupriavidus metallidurans are specialized in the maximal viable response to heavy metals.

作者信息

Monchy Sébastien, Benotmane Mohammed A, Janssen Paul, Vallaeys Tatiana, Taghavi Safiyh, van der Lelie Daniel, Mergeay Max

机构信息

Molecular & Cellular Biology, Institute for Health, Environment & Safety, Center of Studies for Nuclear Energy, SCK CEN, B-2400, Mol, Belgium.

出版信息

J Bacteriol. 2007 Oct;189(20):7417-25. doi: 10.1128/JB.00375-07. Epub 2007 Aug 3.

Abstract

We fully annotated two large plasmids, pMOL28 (164 open reading frames [ORFs]; 171,459 bp) and pMOL30 (247 ORFs; 233,720 bp), in the genome of Cupriavidus metallidurans CH34. pMOL28 contains a backbone of maintenance and transfer genes resembling those found in plasmid pSym of C. taiwanensis and plasmid pHG1 of C. eutrophus, suggesting that they belong to a new class of plasmids. Genes involved in resistance to the heavy metals Co(II), Cr(VI), Hg(II), and Ni(II) are concentrated in a 34-kb region on pMOL28, and genes involved in resistance to Ag(I), Cd(II), Co(II), Cu(II), Hg(II), Pb(II), and Zn(II) occur in a 132-kb region on pMOL30. We identified three putative genomic islands containing metal resistance operons flanked by mobile genetic elements, one on pMOL28 and two on pMOL30. Transcriptomic analysis using quantitative PCR and microarrays revealed metal-mediated up-regulation of 83 genes on pMOL28 and 143 genes on pMOL30 that coded for all known heavy metal resistance proteins, some new heavy metal resistance proteins (czcJ, mmrQ, and pbrU), membrane proteins, truncated transposases, conjugative transfer proteins, and many unknown proteins. Five genes on each plasmid were down-regulated; for one of them, chrI localized on pMOL28, the down-regulation occurred in the presence of five cations. We observed multiple cross-responses (induction of specific metal resistance by other metals), suggesting that the cellular defense of C. metallidurans against heavy metal stress involves various regulons and probably has multiple stages, including a more general response and a more metal-specific response.

摘要

我们对嗜金属贪铜菌CH34基因组中的两个大质粒pMOL28(164个开放阅读框[ORF];171,459碱基对)和pMOL30(247个ORF;233,720碱基对)进行了全面注释。pMOL28含有一个维持和转移基因骨干,类似于在台湾贪铜菌的质粒pSym和富营养贪铜菌的质粒pHG1中发现的那些基因,这表明它们属于一类新的质粒。参与对重金属Co(II)、Cr(VI)、Hg(II)和Ni(II)抗性的基因集中在pMOL28上一个34千碱基的区域,而参与对Ag(I)、Cd(II)、Co(II)、Cu(II)、Hg(II)、Pb(II)和Zn(II)抗性的基因出现在pMOL30上一个132千碱基的区域。我们鉴定出三个推定的基因组岛,其包含由可移动遗传元件侧翼的金属抗性操纵子,一个在pMOL28上,两个在pMOL30上。使用定量PCR和微阵列的转录组分析揭示了金属介导的pMOL28上83个基因和pMOL30上143个基因的上调,这些基因编码所有已知的重金属抗性蛋白、一些新的重金属抗性蛋白(czcJ、mmrQ和pbrU)、膜蛋白、截短的转座酶、接合转移蛋白以及许多未知蛋白。每个质粒上有五个基因被下调;其中一个,位于pMOL28上的chrI,在存在五种阳离子的情况下发生下调。我们观察到多种交叉反应(其他金属诱导特定金属抗性),这表明嗜金属贪铜菌对重金属胁迫的细胞防御涉及各种调控子,并且可能有多个阶段,包括更普遍的反应和更具金属特异性的反应。

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