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In depth analysis of the mechanism of action of metal-dependent sigma factors: characterization of CorE2 from Myxococcus xanthus

机译:深入分析金属依赖性西格玛因子的作用机理:粘球菌中CorE2的表征

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摘要

Extracytoplasmic function sigma factors represent the third pillar of signal-transduction mechanisms in bacteria. The variety of stimuli they recognize and mechanisms of action they use have allowed their classification into more than 50 groups. We have characterized CorE2 from Myxococcus xanthus, which belongs to group ECF44 and upregulates the expression of two genes when it is activated by cadmium and zinc. Sigma factors of this group contain a Cys-rich domain (CRD) at the C terminus which is essential for detecting metals. Point mutations at the six Cys residues of the CRD have revealed the contribution of each residue to CorE2 activity. Some of them are essential, while others are either dispensable or their mutations only slightly affect the activity of the protein. However, importantly, mutation of Cys174 completely shifts the specificity of CorE2 from cadmium to copper, indicating that the Cys arrangement of the CRD determines the metal specificity. Moreover, the conserved CxC motif located between the sigma 2 domain and the sigma 4.2 region has also been found to be essential for activity. The results presented here contribute to our understanding of the mechanism of action of metal-dependent sigma factors and help to define new common features of the members of this group of regulators.
机译:胞外功能σ因子代表细菌信号转导机制的第三大支柱。他们认识到各种刺激因素以及他们使用的作用机制已将其分为50多个类别。我们已经表征了来自黄色粘球菌的CorE2,它属于ECF44组,并且在被镉和锌激活时会上调两个基因的表达。该组的Sigma因子在C末端包含一个富含Cys的结构域(CRD),这对于检测金属至关重要。 CRD的六个Cys残基处的点突变表明每个残基对CorE2活性的贡献。它们中的一些是必不可少的,而其他一些则是可有可无的,或者它们的突变仅轻微影响蛋白质的活性。但是,重要的是,Cys174的突变使CorE2的特异性从镉完全转移到了铜,这表明CRD的Cys排列决定了金属的特异性。此外,还发现位于sigma 2域和sigma 4.2域之间的保守CxC基序对于活性至关重要。本文介绍的结果有助于我们理解金属依赖的sigma因子的作用机理,并有助于定义该组调节器成员的新共同特征。

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