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HAMP Domain Conformers That Propagate Opposite Signals in Bacterial Chemoreceptors

机译:在细菌化学感受器中传播相反信号的HAMP域构象子

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HAMP domains are signal relay modules in >26,000 receptors of bacteria, eukaryotes, and archaea that mediate processes involved in chemotaxis, pathogenesis, and biofilm formation. We identify two HAMP conformations distinguished by a four- to two-helix packing transition at the C-termini that send opposing signals in bacterial chemoreceptors. Crystal structures of signal-locked mutants establish the observed structure-to-function relationships. Pulsed dipolar electron spin resonance spectroscopy of spin-labeled soluble receptors active in cells verify that the crystallographically defined HAMP conformers are maintained in the receptors and influence the structure and activity of downstream domains accordingly. Mutation of HR2, a key residue for setting the HAMP conformation and generating an inhibitory signal, shifts HAMP structure and receptor output to an activating state. Another HR2 variant displays an inverted response with respect to ligand and demonstrates the fine energetic balance between “on” and “off” conformers. A DExG motif found in membrane proximal HAMP domains is shown to be critical for responses to extracellular ligand. Our findings directly correlate in vivo signaling with HAMP structure, stability, and dynamics to establish a comprehensive model for HAMP-mediated signal relay that consolidates existing views on how conformational signals propagate in receptors. Moreover, we have developed a rational means to manipulate HAMP structure and function that may prove useful in the engineering of bacterial taxis responses.
机译:HAMP域是细菌,真核生物和古细菌的> 26,000个受体中的信号中继模块,介导涉及趋化性,发病机理和生物膜形成的过程。我们确定了两个HAMP构象,以在C-末端的四个到两个螺旋的堆积过渡为特征,该过渡在细菌化学感受器中发送相反的信号。信号锁定突变体的晶体结构建立了观察到的结构与功能的关系。细胞中有自旋标记的可溶性受体的脉冲偶极电子自旋共振光谱证实了晶体学上定义的HAMP构象异构体保持在受体中,并相应地影响下游域的结构和活性。 HR2的突变是设置HAMP构象并产生抑制信号的关键残基,可将HAMP结构和受体输出转变为激活状态。另一个HR2变体显示出对配体的反向反应,并证明了“ on”和“ off”构象体之间的良好能量平衡。在膜近端HAMP域中发现的DExG基序对于响应细胞外配体至关重要。我们的发现将体内信号与HAMP的结构,稳定性和动力学直接相关,从而建立了HAMP介导的信号中继的综合模型,该模型巩固了关于构象信号如何在受体中传播的现有观点。此外,我们已经开发出一种合理的手段来操纵HAMP的结构和功能,可能被证明对细菌出租车反应的工程有用。

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