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首页> 外文期刊>Current Proteomics >A Structural Analysis of the Mode of Action of ORF1 in Pseudaminobacter salicylatoxidans: Prediction of its Role in the Global Sulfur Oxidation Operon (sox)
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A Structural Analysis of the Mode of Action of ORF1 in Pseudaminobacter salicylatoxidans: Prediction of its Role in the Global Sulfur Oxidation Operon (sox)

机译:结构分析的ORF1在Pseudaminobacter salyylatoxidans中的作用方式:预测其在全球硫氧化Operon(sox)中的作用。

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摘要

The sulfur compound metabolizing sox operon of microbes consists of two transcriptional units. Recently a new orf, which code for protein named ORF1, was identified in Pseudaminobacter salicylatoxidans which is one of the most prominent sulfur oxidizers. Sequence analyses reveal ORF1 has the signature sequence of the dsr family of sulfate ion binding proteins. It is present in an analogoues position as the ORF1 of Starkeya novella. There are no studies regarding the structural biology ORF1 of Pseudaminobacter salicylatoxidans. In order to elucidate the structural aspects of the mechanistic details of of the protein, homology modeling technique has been employed to construct the three-dimensional structure of ORF1. ORF1 from Starkeya novella is known to interact with the transcriptional activator SigE which is known to bind to its adjacent promoter DNA sequence and thereby regulate the sox gene cluster in Starkeya novella. Pseudaminobacter salicylatoxidans does not contain the SigE protein but instead possesses another transcriptional activator SoxR which performs similar function as SigE. In order to verify whether ORF1 of Pseudaminobacter salicylatoxidans serves the similar function as that of Starkeya novella by molecular docking analyses have been performed using the models of ORF1 and SoxR to predict the favourable binding interactions of the proteins. The putative sulfate ion binding residues of ORF1 has also been identified by docking sulfate ion on to it. This study provides a rational framework for understanding of the structural as well as the molecular basis of the mechanism of the regulation of sulfur oxidation reactions ORF1 proteins via the sox operon.
机译:微生物的硫化合物代谢硫操纵子由两个转录单元组成。最近,在最重要的硫氧化剂之一的水杨假单胞菌中鉴定了一种新的orf,其编码名为ORF1的蛋白质。序列分析表明,ORF1具有dsr硫酸盐离子结合蛋白家族的签名序列。它的存在与Starkeya Novella的ORF1类似。没有关于水杨假单胞菌的结构生物学ORF1的研究。为了阐明该蛋白质的机械细节的结构方面,已采用同源性建模技术来构建ORF1的三维结构。已知来自新奇斯塔科的ORF1与转录激活因子SigE相互作用,后者已知与其邻近的启动子DNA序列结合,从而调节新奇斯塔科的sox基因簇。水杨酸假单胞菌不包含SigE蛋白,而是具有另一种转录激活因子SoxR,其功能与SigE类似。为了验证水杨酸假单胞菌的ORF1是否起着与新星菌相同的功能,已通过使用ORF1和SoxR的模型进行分子对接分析来预测蛋白质的有利结合相互作用。还可以通过将硫酸根离子对接到ORF1上来确定其与硫酸根离子结合的残基。这项研究提供了一个合理的框架,用于理解通过硫操纵子调节硫氧化反应ORF1蛋白的机制的结构以及分子基础。

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