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调控编码蛋白的 dsr 基因,这些蛋白负责氧化 Allochromatium vinosum 中的储存硫。

Regulation of dsr genes encoding proteins responsible for the oxidation of stored sulfur in Allochromatium vinosum.

机构信息

Institut für Mikrobiologie & Biotechnologie, Rheinische Friedrich-Wilhelms-Universität Bonn, Meckenheimer Allee 168, D-53115 Bonn, Germany.

出版信息

Microbiology (Reading). 2010 Mar;156(Pt 3):764-773. doi: 10.1099/mic.0.034645-0. Epub 2009 Dec 10.

Abstract

Sulfur globules are formed as obligatory intermediates during the oxidation of reduced sulfur compounds in many environmentally important photo- and chemolithoautotrophic bacteria. It is well established that the so-called Dsr proteins are essential for the oxidation of zero-valent sulfur accumulated in the globules; however, hardly anything is known about the regulation of dsr gene expression. Here, we present a closer look at the regulation of the dsr genes in the phototrophic sulfur bacterium Allochromatium vinosum. The dsr genes are expressed in a reduced sulfur compound-dependent manner and neither sulfite, the product of the reverse-acting dissimilatory sulfite reductase DsrAB, nor the alternative electron donor malate inhibit the gene expression. Moreover, we show the oxidation of sulfur to sulfite to be the rate-limiting step in the oxidation of sulfur to sulfate as sulfate production starts concomitantly with the upregulation of the expression of the dsr genes. Real-time RT-PCR experiments suggest that the genes dsrC and dsrS are additionally expressed from secondary internal promoters, pointing to a special function of the encoded proteins. Earlier structural analyses indicated the presence of a helix-turn-helix (HTH)-like motif in DsrC. We therefore assessed the DNA-binding capability of the protein and provide evidence for a possible regulatory function of DsrC.

摘要

硫球是许多环境中重要的光自养和化能自养细菌在还原态硫化合物氧化过程中形成的必需中间体。众所周知,所谓的 Dsr 蛋白对于在球体内积累的零价硫的氧化是必不可少的;然而,对于 dsr 基因表达的调控几乎一无所知。在这里,我们更深入地研究了光合硫细菌 Allochromatium vinosum 中 dsr 基因的调控。dsr 基因的表达依赖于还原态硫化合物,亚硫酸盐(反作用异化亚硫酸盐还原酶 DsrAB 的产物)和替代电子供体苹果酸都不会抑制基因表达。此外,我们表明,硫到亚硫酸盐的氧化是硫到硫酸盐氧化的限速步骤,因为硫酸盐的产生与 dsr 基因表达的上调同时发生。实时 RT-PCR 实验表明,dsrC 和 dsrS 基因还可以从次要的内部启动子表达,这表明编码蛋白具有特殊功能。早期的结构分析表明 DsrC 中存在一个螺旋-转角-螺旋(HTH)样结构域。因此,我们评估了该蛋白的 DNA 结合能力,并提供了 DsrC 可能具有调控功能的证据。

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