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DsrR,一种新型的 IscA 样蛋白,缺乏铁和 Fe-S 结合功能,参与调控 Allochromatium vinosum 中的硫氧化。

DsrR, a novel IscA-like protein lacking iron- and Fe-S-binding functions, involved in the regulation of sulfur oxidation 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

J Bacteriol. 2010 Mar;192(6):1652-61. doi: 10.1128/JB.01269-09. Epub 2010 Jan 8.

Abstract

In the purple sulfur bacterium Allochromatium vinosum, the reverse-acting dissimilatory sulfite reductase (DsrAB) is the key enzyme responsible for the oxidation of intracellular sulfur globules. The genes dsrAB are the first and the gene dsrR is the penultimate of the 15 genes of the dsr operon in A. vinosum. Genes homologous to dsrR occur in a number of other environmentally important sulfur-oxidizing bacteria utilizing Dsr proteins. DsrR exhibits sequence similarities to A-type scaffolds, like IscA, that partake in the maturation of protein-bound iron-sulfur clusters. We used nuclear magnetic resonance (NMR) spectroscopy to solve the solution structure of DsrR and to show that the protein is indeed structurally highly similar to A-type scaffolds. However, DsrR does not retain the Fe-S- or the iron-binding ability of these proteins, which is due to the lack of all three highly conserved cysteine residues of IscA-like scaffolds. Taken together, these findings suggest a common function for DsrR and IscA-like proteins different from direct participation in iron-sulfur cluster maturation. An A. vinosum DeltadsrR deletion strain showed a significantly reduced sulfur oxidation rate that was fully restored upon complementation with dsrR in trans. Immunoblot analyses revealed a reduced level of DsrE and DsrL in the DeltadsrR strain. These proteins are absolutely essential for sulfur oxidation. Transcriptional and translational gene fusion experiments suggested the participation of DsrR in the posttranscriptional control of the dsr operon, similar to the alternative function of cyanobacterial IscA as part of the sense and/or response cascade set into action upon iron limitation.

摘要

在紫色硫细菌交替脱硫弧菌中,反向作用的异化亚硫酸盐还原酶(DsrAB)是负责氧化细胞内硫球的关键酶。dsrAB 基因是交替脱硫弧菌中 15 个 dsr 操纵子基因的第一个,dsrR 基因是倒数第二个。dsrR 基因在许多其他利用 Dsr 蛋白的环境重要的硫氧化细菌中都有同源基因。DsrR 与 A 型支架(如 IscA)表现出序列相似性,这些支架参与蛋白质结合的铁硫簇的成熟。我们使用核磁共振(NMR)光谱法解决了 DsrR 的溶液结构,并表明该蛋白在结构上与 A 型支架高度相似。然而,DsrR 并不保留这些蛋白质的 Fe-S 或铁结合能力,这是由于缺乏 IscA 样支架的三个高度保守的半胱氨酸残基。总之,这些发现表明 DsrR 和 IscA 样蛋白具有不同于直接参与铁硫簇成熟的共同功能。一株交替脱硫弧菌 DeltadsrR 缺失株的硫氧化速率显著降低,而在反式互补 dsrR 后则完全恢复。免疫印迹分析显示,DeltadsrR 菌株中 DsrE 和 DsrL 的水平降低。这些蛋白对硫氧化是绝对必要的。转录和翻译基因融合实验表明,DsrR 参与 dsr 操纵子的转录后调控,类似于蓝细菌 IscA 的替代功能,作为铁限制时感应和/或响应级联的一部分。

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