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Cross-linking of glycine receptor transmembrane segments two and three alters coupling of ligand binding with channel opening
- Source :
- Journal of Neurochemistry. 90:962-969
- Publication Year :
- 2004
- Publisher :
- Wiley, 2004.
-
Abstract
- Contact points between transmembrane segments (TMs) two and three of the glycine receptor are undefined and may play an important role in channel gating. We tested whether two amino acids in TM2 (S267) and TM3 (A288), known to be critical for alcohol and volatile anesthetic action, could cross-link by mutating both to cysteines and expressing the receptors in Xenopus laevis oocytes. In contrast with the wild-type receptor and single cysteine mutants, the S267C/A288C double mutant displayed unusual responses, including a tonic leak activity that was closed by strychnine and a run-down of the response upon repeated applications of glycine. We hypothesized that these characteristics were due to cross-linking of the two cysteines on opposing faces of these adjacent, alpha helical TMs. This would alter the movement of these two regions required for normal gating. To test this hypothesis, we used dithiothreitol to reduce the putative S267C-A288C disulfide bond. Reduction abolished the leak current and provided normal responses to glycine. Subsequent application of the cross-linking agent mercuric chloride caused the initial characteristics to return. These data demonstrate that S267 and A288 are near-neighbors and provide insight towards the location and role of the TM2-TM3 interface in ligand-gated ion channels.
- Subjects :
- Stereochemistry
Glycine
Xenopus
Gating
Ligands
Biochemistry
Structure-Activity Relationship
Xenopus laevis
Cellular and Molecular Neuroscience
chemistry.chemical_compound
Receptors, Glycine
Animals
Humans
Glycine receptor
Ion channel
chemistry.chemical_classification
biology
Biological Transport
Strychnine
biology.organism_classification
Transmembrane protein
Amino acid
Cross-Linking Reagents
Amino Acid Substitution
chemistry
Alcohols
Anesthetics, Inhalation
Mutagenesis, Site-Directed
Oocytes
Biophysics
Ion Channel Gating
Cysteine
Subjects
Details
- ISSN :
- 14714159 and 00223042
- Volume :
- 90
- Database :
- OpenAIRE
- Journal :
- Journal of Neurochemistry
- Accession number :
- edsair.doi.dedup.....4a5c18670dc17bbd7f3e59dc56e038c6