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Respiratory chain strongly oxidizes the CXXC motif of DsbB in the Escherichia coli disulfide bond formation pathway.

机译:呼吸链在大肠杆菌二硫键形成途径中强烈氧化DsbB的CXXC基序。

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摘要

Escherichia coli DsbB has four essential cysteine residues, among which Cys41 and Cys44 form a CXXC redox active site motif and the Cys104-Cys130 disulfide bond oxidizes the active site cysteines of DsbA, the disulfide bond formation factor in the periplasm. Functional respiratory chain is required for the cell to keep DsbA oxidized. In this study, we characterized the roles of essential cysteines of DsbB in the coupling with the respiratory chain. Cys104 was found to form the inactive complex with DsbA under respiration-defective conditions. While DsbB, under normal aerobic conditions, is in the oxidized state, having two intramolecular disulfide bonds, oxidation of Cys104 and Cys130 requires the presence of Cys41-Cys44. Remarkably, the Cys41-Cys44 disulfide bond is refractory to reduction by a high concentration of dithiothreitol, unless the membrane is solubilized with a detergent. This reductant resistance requires both the respiratory function and oxygen, since Cys41-Cys44 became sensitive to the reducing agent when membrane was prepared from quinone- or heme-depleted cells or when a membrane sample was deaerated. Thus, the Cys41-Val-Leu-Cys44 motif of DsbB is kept both strongly oxidized and strongly oxidizing when DsbB is integrated into the membrane with the normal set of respiratory components.
机译:大肠杆菌DsbB具有四个必需的半胱氨酸残基,其中Cys41和Cys44形成CXXC氧化还原活性位点基序,而Cys104-Cys130二硫键氧化DsbA的活性位点半胱氨酸,DsbA是周质中的二硫键形成因子。细胞保持DsbA氧化需要功能性呼吸链。在这项研究中,我们表征了DsbB的必需半胱氨酸在与呼吸链偶联中的作用。发现Cys104在呼吸缺陷条件下与DsbA形成了无活性的复合物。当DsbB在正常有氧条件下处于氧化状态且具有两个分子内二硫键时,Cys104和Cys130的氧化需要Cys41-Cys44的存在。值得注意的是,除非用去污剂溶解膜,否则Cys41-Cys44二硫键难于被高浓度的二硫苏糖醇还原。这种还原剂抗性需要呼吸功能和氧气,这是因为当从贫醌或血红素的细胞中制备膜或对膜样品进行脱气时,Cys41-Cys44对还原剂敏感。因此,DsbB的Cys41-Val-Leu-Cys44基序在DsbB与正常的呼吸成分结合到膜中时既保持强烈氧化又保持强烈氧化。

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