Institute of Biology, Leiden University, 2333 BE Leiden, The Netherlands.
Department of Ecophysiology, Max Plank Institute for Terrestrial Microbiology, 35043 Marburg, Germany.
Proc Natl Acad Sci U S A. 2018 Dec 26;115(52):13365-13370. doi: 10.1073/pnas.1811931115. Epub 2018 Dec 12.
The chemoreceptor array, a remarkably ordered supramolecular complex, is composed of hexagonally packed trimers of receptor dimers networked by a histidine kinase and one or more coupling proteins. Even though the receptor packing is universal among chemotactic bacteria and archaea, the array architecture has been extensively studied only in selected model organisms. Here, we show that even in the complete absence of the kinase, the cluster II arrays in retain their native spatial localization and the iconic hexagonal packing of the receptors with 12-nm spacing. Our results demonstrate that the chemotaxis array is versatile in composition, a property that allows auxiliary chemotaxis proteins such as ParP and CheV to integrate directly into the assembly. Along with its compositional variability, cluster II arrays exhibit a low degree of structural stability compared with the ultrastable arrays in We propose that the variability in chemoreceptor arrays is an important mechanism that enables the incorporation of chemotaxis proteins based on their availability.
化感受体排列,一种非常有序的超分子复合物,由六方排列的受体二聚体三聚体组成,由组氨酸激酶和一个或多个偶联蛋白组成的网络。尽管趋化性细菌和古菌中的受体包装是普遍的,但该排列结构仅在选定的模型生物中得到了广泛研究。在这里,我们表明,即使在没有激酶的情况下, 中保留了其天然的空间定位和受体的标志性六边形包装,间距为 12nm。我们的结果表明,趋化性阵列在组成上是多功能的,这种特性允许辅助趋化性蛋白,如 ParP 和 CheV,直接整合到组装中。与超稳定的 相比,簇 II 阵列表现出较低的结构稳定性。我们提出,趋化性受体排列的可变性是一种重要的机制,可根据其可用性纳入趋化性蛋白。