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Alternative Architecture of the E. coli Chemosensory Array

机译:大肠杆菌化学感觉阵列的替代结构

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Chemotactic responses in motile bacteria are the result of sophisticated signal transduction by large, highly organized arrays of sensory proteins. Despite tremendous progress in the understanding of chemosensory array structure and function, a structural basis for the heightened sensitivity of networked chemoreceptors is not yet complete. Here, we present cryo-electron tomography visualisations of native-state chemosensory arrays in E. coli minicells. Strikingly, these arrays appear to exhibit a p2-symmetric array architecture that differs markedly from the p6-symmetric architecture previously described in E. coli. Based on this data, we propose molecular models of this alternative architecture and the canonical p6-symmetric assembly. We evaluate our observations and each model in the context of previously published data, assessing the functional implications of an alternative architecture and effects for future studies.
机译:运动细菌中的趋化反应是由大型、高度组织的感觉蛋白阵列进行复杂信号转导的结果。尽管在对化学感觉阵列结构和功能的理解方面取得了巨大进展,但网络化学感受器提高灵敏度的结构基础尚未完成。在这里,我们展示了大肠杆菌微型细胞中天然状态化学感觉阵列的冷冻电子断层扫描可视化。引人注目的是,这些阵列似乎表现出p2对称阵列结构,与先前在大肠杆菌中描述的p6对称结构明显不同。基于这些数据,我们提出了这种替代结构和规范 p6 对称组装的分子模型。我们在先前发表的数据的背景下评估我们的观察结果和每个模型,评估替代架构的功能影响和对未来研究的影响。

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