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玫瑰色硫囊菌BBS中hupSL基因的非氢依赖性表达

Hydrogen independent expression of hupSL genes in Thiocapsa roseopersicina BBS.

作者信息

Kovács Akos T, Rákhely Gábor, Balogh Judit, Maróti Gergely, Cournac Laurent, Carrier Patrick, Mészáros Lívia S, Peltier Gilles, Kovács Kornél L

机构信息

Institute of Biophysics, Biological Research Center, Hungarian Academy of Sciences, and Department of Biotechnology, University of Szeged, Hungary.

出版信息

FEBS J. 2005 Sep;272(18):4807-16. doi: 10.1111/j.1742-4658.2005.04896.x.

Abstract

The expression of many membrane bound [NiFe] hydrogenases is regulated by their substrate molecule, hydrogen. The HupSL hydrogenase, encoded in the hupSLCDHIR operon, probably plays a role in hydrogen recycling in the phototrophic purple bacterium, Thiocapsa roseopersicina BBS. RpoN, coding for sigma factor 54, was shown to be important for expression, suggesting a regulated biosynthsis from the hup gene cluster. The response regulator gene, hupR, has been identified in the hup operon and expression of hupSL was reduced in a chromosomal hupR mutant, which indicated that HupR was implicated in the activation process. The hupT and hupUV genes were isolated, and show similarity to the histidine kinase element of the H2-driven signal transduction system and to the regulatory hydrogenases of Ralstonia eutropha and Rhodobacter capsulatus, respectively. Although the genes of the entire H2 sensing and regulation system were present, the expression of the hupSL genes was not affected by the presence or absence of H2. Using reverse transcription PCR, we could not detect any mRNA specific to the hupTUV genes in cells grown under diverse conditions. The hupT and hupUV mutant strains had the same phenotype as the wild-type strains. The hupT gene product, expressed from a plasmid, repressed HupSL synthesis as expected while introduction of actively expressed hupTUV genes together derepressed the HupSL activity in T. roseopersicina. The gene product of hupUV behaves similarly to other regulatory hydrogenases and shows H-D exchange activity.

摘要

许多膜结合[NiFe]氢化酶的表达受其底物分子氢气的调控。编码于hupSLCDHIR操纵子中的HupSL氢化酶可能在光合紫色细菌玫瑰色硫囊菌BBS的氢循环中发挥作用。编码σ因子54的RpoN对表达很重要,这表明hup基因簇的生物合成受到调控。已在hup操纵子中鉴定出响应调节基因hupR,在染色体hupR突变体中hupSL的表达降低,这表明HupR参与了激活过程。分离出了hupT和hupUV基因,它们分别与H2驱动信号转导系统的组氨酸激酶元件以及真养产碱菌和荚膜红细菌的调节氢化酶相似。尽管存在完整的H2感应和调节系统的基因,但hupSL基因的表达不受H2存在与否的影响。使用逆转录PCR,我们在不同条件下生长的细胞中未检测到任何hupTUV基因特异性的mRNA。hupT和hupUV突变株与野生型菌株具有相同的表型。从质粒表达的hupT基因产物如预期那样抑制了HupSL的合成,而同时引入活跃表达的hupTUV基因则解除了玫瑰色硫囊菌中HupSL的活性抑制。hupUV的基因产物表现得与其他调节氢化酶相似,并具有H-D交换活性。

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