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Updated: Jun 22, 2026

C. elegans Chemotaxis Assay
Published on: April 27, 2013
Spatiotemporal modelling of CheY complexes in Escherichia coli chemotaxis
M J Tindall1, S L Porter, G H Wadhams
1Institute for Cardiovascular and Metabolic Research and School of Biological Sciences and Department of Mathematics, University of Reading, Whiteknights, Reading, Berkshire RG6 6AP, UK. m.tindall@reading.ac.uk
Abstract:
The chemotaxis pathway of Escherichia coli is one of the best studied and modelled biological signalling pathways. Here we extend existing modelling approaches by explicitly including a description of the formation and subcellular localization of intermediary complexes in the phosphotransfer pathway. The inclusion of these complexes shows that only about 60% of the total output response regulator (CheY) is uncomplexed at any moment and hence free to interact with its target, the flagellar motor. A clear strength of this model is its ability to predict the experimentally observable subcellular localization of CheY throughout a chemotactic response. We have found good agreement between the model output and experimentally determined CheY localization patterns.
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