Gating Dynamics of the Acetylcholine Receptor Extracellular Domain
Open Access
- 29 March 2004
- journal article
- Published by Rockefeller University Press in The Journal of general physiology
- Vol. 123 (4) , 341-356
- https://doi.org/10.1085/jgp.200309004
Abstract
We used single-channel recording and model-based kinetic analyses to quantify the effects of mutations in the extracellular domain (ECD) of the α-subunit of mouse muscle–type acetylcholine receptors (AChRs). The crystal structure of an acetylcholine binding protein (AChBP) suggests that the ECD is comprised of a β-sandwich core that is surrounded by loops. Here we focus on loops 2 and 7, which lie at the interface of the AChR extracellular and transmembrane domains. Side chain substitutions in these loops primarily affect channel gating by either decreasing or increasing the gating equilibrium constant. Many of the mutations to the β-core prevent the expression of functional AChRs, but of the mutants that did express almost all had wild-type behavior. Rate-equilibrium free energy relationship analyses reveal the presence of two contiguous, distinct synchronously-gating domains in the α-subunit ECD that move sequentially during the AChR gating reaction. The transmitter-binding site/loop 5 domain moves first (Φ = 0.93) and is followed by the loop 2/loop 7 domain (Φ = 0.80). These movements precede that of the extracellular linker (Φ = 0.69). We hypothesize that AChR gating occurs as the stepwise movements of such domains that link the low-to-high affinity conformational change in the TBS with the low-to-high conductance conformational change in the pore.Keywords
This publication has 35 references indexed in Scilit:
- Coupling of agonist binding to channel gating in the GABAA receptorNature, 2003
- Activation of the Nicotinic Acetylcholine Receptor Involves a Switch in Conformation of the α SubunitsJournal of Molecular Biology, 2002
- Emerging structure of the Nicotinic Acetylcholine receptorsNature Reviews Neuroscience, 2002
- Asymmetric and Independent Contribution of the Second Transmembrane Segment 12′ Residues to Diliganded Gating of Acetylcholine Receptor ChannelsThe Journal of general physiology, 2000
- Kinetic, Mechanistic, and Structural Aspects of Unliganded Gating of Acetylcholine Receptor ChannelsThe Journal of general physiology, 2000
- Nicotinic acetylcholine receptor at 4.6 Å resolution: transverse tunnels in the channelJournal of Molecular Biology, 1999
- A re‐examination of adult mouse nicotinic acetylcholine receptor channel activation kineticsThe Journal of Physiology, 1999
- Structure of the transition state in the folding process of human procarboxypeptidase A2 activation domainJournal of Molecular Biology, 1998
- Desensitization of Mouse Nicotinic Acetylcholine Receptor ChannelsThe Journal of general physiology, 1998
- The Structure of the Transition State for Folding of Chymotrypsin Inhibitor 2 Analysed by Protein Engineering Methods: Evidence for a Nucleation-condensation Mechanism for Protein FoldingJournal of Molecular Biology, 1995