首页> 外文期刊>Journal of Molecular Biology Research >Identification and In-vivo Characterization of a Novel OhrR Transcriptional Regulator in Burkholderia xenovorans LB400
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Identification and In-vivo Characterization of a Novel OhrR Transcriptional Regulator in Burkholderia xenovorans LB400

机译:伯克霍尔德氏菌LB400中的新型OhrR转录调节因子的鉴定和体内特征

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Transcriptional regulators (TRs) are an important and versatile group of proteins, yet very little progress has been achieved towards the discovery and annotation of their biological functions. We have characterized a previously unknown organic hydroperoxide resistance regulator from Burkholderia xenovorans LB400, Bxe_B2842, which is homologous to E. coli’s OhrR. Bxe_B2842 regulates the expression of an organic hydroperoxide resistance protein (OsmC). We utilized frontal affinity chromatography coupled with mass spectrometry (FAC-MS) and electrophoretic mobility gel shift assays (EMSA) to identify and characterize the possible effectors of the regulation by Bxe_B2842. Without an effector, Bxe_B2842 binds a DNA operator sequence (DOS) upstream of osmC . FAC-MS results suggest that 2-aminophenol binds to the protein and is potentially an effector molecule. EMSA analysis shows that 2-aminophenol attenuates the Bxe_B2842’s affinity for its DOS. EMSA analysis also shows that organic peroxides attenuate Bxe_B2842/DOS affinity, suggesting that binding of the TR to its DOS is regulated by the two-cysteine mechanism, common to TRs in this family. Bxe_B2842 is the first OhrR TR to have both oxidative and effector-binding mechanisms of regulation. This paper reveals further mechanistic diversity TR mediated gene regulation and provides insights into methods for function discovery of TRs.
机译:转录调节因子(TRs)是一种重要且用途广泛的蛋白质,但是在发现和注释其生物学功能方面进展甚微。我们已经鉴定了伯克霍尔德菌xenovorans LB400(Bxe_B2842)以前未知的有机过氧化氢抗性调节剂,该调节剂与大肠杆菌的OhrR同源。 Bxe_B2842调节有机氢过氧化物抗性蛋白(OsmC)的表达。我们利用额叶亲和色谱结合质谱法(FAC-MS)和电泳迁移率凝胶位移测定(EMSA)来鉴定和表征Bxe_B2842调控的可能效应子。没有效应子,Bxe_B2842会在osmC上游结合DNA操纵子序列(DOS)。 FAC-MS结果表明2-氨基苯酚与蛋白质结合,并且可能是效应分子。 EMSA分析表明,2-氨基苯酚会减弱Bxe_B2842对DOS的亲和力。 EMSA分析还显示,有机过氧化物会减弱Bxe_B2842 / DOS的亲和力,这表明TR与其DOS的结合受该家族TR中常见的双半胱氨酸机制调节。 Bxe_B2842是第一个同时具有氧化和效应结合机制的OhrR TR。本文揭示了TR介导的基因调控的进一步机制多样性,并为TR功能发现方法提供了见识。

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