Bacterial chemoreceptor signaling complexes control kinase activity by stabilizing the catalytic domain of CheA.
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ABSTRACT: Motile bacteria have a chemotaxis system that enables them to sense their environment and direct their swimming toward favorable conditions. Chemotaxis involves a signaling process in which ligand binding to the extracellular domain of the chemoreceptor alters the activity of the histidine kinase, CheA, bound ~300 Å away to the distal cytoplasmic tip of the receptor, to initiate a phosphorylation cascade that controls flagellar rotation. The cytoplasmic domain of the receptor is thought to propagate this signal via changes in dynamics and/or stability, but it is unclear how these changes modulate the kinase activity of CheA. To address this question, we have used hydrogen deuterium exchange mass spectrometry to probe the structure and dynamics of CheA within functional signaling complexes
SUBMITTER: Tran T
PROVIDER: S-EPMC10410752 | biostudies-literature | 2023 Aug
REPOSITORIES: biostudies-literature
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