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Role Of Hamp Domains In Chemotaxis Signaling By Bacterial Chemoreceptors

机译:汉普域在细菌趋化信号趋化信号中的作用。

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Bacterial chemoreceptors undergo conformational changes in response to variations in the concentration of extracellular ligands. These changes in chemoreceptor structure initiate a series of signaling events that ultimately result in regulation of rotation of the flagellar motor. Here we have used cryo-electron tomography combined with 3D averaging to determine the in situ structure of chemoreceptor assemblies in Escherichia coli cells that have been engineered to overproduce the serine chemoreceptor Tsr. We demonstrate that chemoreceptors are organized as trimers of receptor dimers and display two distinct conformations that differ principally in arrangement of the HAMP domains within each trimer. Ligand binding and methylation alter the distribution of chemoreceptors between the two conformations, with serine binding favoring the "expanded" conformation and chemoreceptor methylation favoring the "compact" conformation. The distinct positions of chemoreceptor HAMP domains within the context of a trimeric unit are thus likely to represent important aspects of chemoreceptor structural changes relevant to chemotaxis signaling. Based on these results, we propose that the compact and expanded conformations represent the "kinase-on" and "kinase-off" states of chemoreceptor trimers, respectively.
机译:细菌化学感受器响应于细胞外配体浓度的变化而发生构象变化。化学感受器结构的这些变化引发了一系列信号传递事件,这些信号传递事件最终导致鞭毛马达旋转的调节。在这里,我们已使用冷冻电子断层扫描技术结合3D平均技术来确定已被工程改造为过度产生丝氨酸化学感受器Tsr的大肠杆菌细胞中化学感受器组件的原位结构。我们证明化学感受器被组织为受体二聚体的三聚体,并显示出两个不同的构象,这些构象主要在每个三聚体中的HAMP结构域的排列方面不同。配体结合和甲基化改变了两个构象之间化学感受器的分布,丝氨酸结合有利于“扩展”构象,化学感受器甲基化有利于“紧凑”构象。因此,三聚体单元内化学受体HAMP结构域的独特位置可能代表与趋化性信号转导相关的化学受体结构变化的重要方面。根据这些结果,我们建议紧密构型和扩展构型分别代表化学受体三聚体的“激酶开启”和“激酶脱落”状态。

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