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Functional Domains of the Bacillus subtilis Transcription Factor AraR and Identification of Amino Acids Important for Nucleoprotein Complex Assembly and Effector Binding

机译:枯草芽孢杆菌转录因子AraR的功能域和对核蛋白复合物组装和效应器结合重要的氨基酸的鉴定。

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摘要

The Bacillus subtilis AraR transcription factor represses at least 13 genes required for the extracellular degradation of arabinose-containing polysaccharides, transport of arabinose, arabinose oligomers, xylose, and galactose, intracellular degradation of arabinose oligomers, and further catabolism of this sugar. AraR exhibits a chimeric organization comprising a small N-terminal DNA-binding domain that contains a winged helix-turn-helix motif similar to that seen with the GntR family and a larger C-terminal domain homologous to that of the LacI/GalR family. Here, a model for AraR was derived based on the known crystal structures of the FadR and PurR regulators from Escherichia coli. We have used random mutagenesis, deletion, and construction of chimeric LexA-AraR fusion proteins to map the functional domains of AraR required for DNA binding, dimerization, and effector binding. Moreover, predictions for the functional role of specific residues were tested by site-directed mutagenesis. In vivo analysis identified particular amino acids required for dimer assembly, formation of the nucleoprotein complex, and composition of the sugar-binding cleft. This work presents a structural framework for the function of AraR and provides insight into the mechanistic mode of action of this modular repressor.
机译:枯草芽孢杆菌AraR转录因子抑制至少13个基因,这些基因对于含阿拉伯糖的多糖的细胞外降解,阿拉伯糖,阿拉伯糖低聚物,木糖和半乳糖的运输,阿拉伯糖低聚物的细胞内降解以及该糖的进一步分解代谢所需。 AraR展示了一个嵌合组织,其中包含一个小的N端DNA结合结构域,该结构域包含一个类似于GntR家族的有翼螺旋-转-螺旋基序和一个与LacI / GalR家族同源的较大C端结构域。在此,基于来自大肠杆菌的FadR和PurR调节剂的已知晶体结构,得出了AraR的模型。我们已经使用随机诱变,删除和嵌合LexA-AraR融合蛋白的构建来绘制DNA结合,二聚化和效应子结合所需的AraR的功能域。此外,通过定点诱变测试了对特定残基功能作用的预测。体内分析确定了二聚体组装,核蛋白复合物的形成和糖结合裂隙的组成所需的特定氨基酸。这项工作提出了AraR功能的结构框架,并提供了对该模块化阻遏物作用机理的深入了解。

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