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Chemotaxis allows E. coli to navigate chemical gradients, moving toward nutrients or away from harmful substances.
On the E. coli surface, chemoreceptors called methyl-accepting chemotaxis proteins, or MCPs, detect temporal changes in concentrations of different environmental attractant or repellent chemical ligands.
Ligand binding to MCP triggers a conformational change that enables CheA activation via CheW. CheA autophosphorylates and transfers the phosphate to the response regulator CheY.
Phosphorylated CheY binds to the flagellar switch complex, inducing clockwise rotation.
An increase in attractant chemical concentration decreases the rate of CheA autophosphorylation, leading to fewer phosphorylated CheY molecules.
As a result, the flagellum continues rotating counterclockwise, allowing the cell to swim smoothly toward the attractant.
Conversely, if a repellent is encountered, CheA autophosphorylation increases, producing more phosphorylated CheY.
The binding of phosphorylated CheY changes flagellar rotation from counterclockwise to clockwise, inducing random tumbles to reorient the cell.
Chemotaxis in Escherichia coli is a sensory-driven motility mechanism that enables bacteria to navigate chemical gradients, moving toward beneficial e…
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