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Peptide-binding dependent conformational changes regulate the transcriptional activity of the quorum-sensor NprR

机译:肽结合依赖的构象变化调节群体传感器NprR的转录活性。

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The transcriptional regulator NprR controls the expression of genes essential for the adaptative response of Bacillus cereus. NprR belongs to the RNPP family of directly regulated quorum sensors from Gram-positive bacteria. It is activated by the re- imported signaling peptide NprX. To elucidate the activation mechanism of this quorum-sensing system, we analyzed the conformation changes induced on binding of NprX. We solved the crystal structure of the NprR/NprX binary complex and characterized the apo form of NprR in solution. We demonstrated that apo NprR is a dimer that switches to a tetramer in the presence of NprX. Mutagenesis, and functional analysis allowed us to identify the protein and peptide residues directly involved in the NprR activation process. Based on the comparison with the Rap proteins, we propose a model for the peptide-induced conformational change allowing the apo dimer to switch to an active tetramer specifically recognizing target DNA sequences.
机译:转录调节子NprR控制蜡样芽孢杆菌的适应性反应所必需的基因的表达。 NprR属于来自革兰氏阳性细菌的直接调控群体传感器的RNPP家族。它被重新导入的信号肽NprX激活。为了阐明该群体感应系统的激活机制,我们分析了结合NprX诱导的构象变化。我们解决了NprR / NprX二元配合物的晶体结构,并表征了溶液中NprR的载脂蛋白形式。我们证明了载脂蛋白NprR是一个二聚体,在存在NprX时会切换为四聚体。诱变和功能分析使我们能够鉴定直接参与NprR激活过程的蛋白质和肽残基。基于与Rap蛋白的比较,我们提出了一种肽诱导的构象变化模型,该模型允许载脂蛋白二聚体转换为特异性识别靶DNA序列的活性四聚体。

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