Transmembrane signaling characterized in bacterial chemoreceptors by using sulfhydryl cross-linking in vivo.
basic_science · Level V
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- Record sourced from PubMed, PMID 7724572.
- Also identified by PMC identifier 42172.
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Abstract
Transmembrane signaling by bacterial chemoreceptors is thought to involve conformational changes within a stable homodimer. We investigated the functional consequences of constraining movement between pairs of helices in the four-helix structure of the transmembrane domain of chemoreceptor Trg. Using a family of cysteine-containing receptors, we identified oxidation treatments for intact cells that catalyzed essentially complete sulfhydryl cross-linking at selected positions and yet left flagellar and sensory functions largely unperturbed. Constraining movement by cross-links between subunits had little effect on tactic response, but constraining movement between transmembrane segments of the monomer drastically reduced function. We deduce that transmembrane signaling requires substantial movement between transmembrane helices of a monomer but not between interacting helices across the interface between subunits.
Medical subject headings
- Bacterial Proteins
- Chemotaxis
- Escherichia coli
- Escherichia coli Proteins
- Receptors, Cell Surface
- Signal Transduction