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Baseplate variability of Vibrio cholerae chemoreceptor arrays.

Wen YangAlejandra AlvaradoTimo GlatterSimon RinggaardAriane Briegel
Published in: Proceedings of the National Academy of Sciences of the United States of America (2018)
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 Vibrio cholerae 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 Escherichia coli We propose that the variability in chemoreceptor arrays is an important mechanism that enables the incorporation of chemotaxis proteins based on their availability.
Keyphrases
  • high density
  • escherichia coli
  • high resolution
  • dna damage
  • protein kinase
  • tyrosine kinase
  • pseudomonas aeruginosa
  • oxidative stress
  • binding protein
  • candida albicans
  • single cell