The α7 nicotinic acetylcholine receptor: Molecular modelling, electrostatics, and energetics
- 1 January 2005
- journal article
- Published by Taylor & Francis in Molecular Membrane Biology
- Vol. 22 (3) , 151-162
- https://doi.org/10.1080/09687860500063340
Abstract
The structure of a homopentameric alpha7 nicotinic acetylcholine receptor is modelled by combining structural information from two sources: the X-ray structure of a water soluble acetylcholine binding protein from Lymnea stagnalis, and the electron microscopy derived structure of the transmembrane domain of the Torpedo nicotinic receptor. The alpha7 nicotinic receptor model is generated by simultaneously optimising: (i) chain connectivity, (ii) avoidance of stereochemically unfavourable contacts, and (iii) contact between the beta1-beta2 and M2-M3 loops that have been suggested to be involved in transmission of conformational change between the extracellular and transmembrane domains. A Gaussian network model was used to predict patterns of residue mobility in the alpha7 model. The results of these calculations suggested a flexibility gradient along the transmembrane domain, with the extracellular end of the domain more flexible that the intracellular end. Poisson-Boltzmann (PB) energy calculations and atomistic (molecular dynamics) simulations were used to estimate the free energy profile of a Na+ ion as a function of position along the axis of the pore-lining M2 helix bundle of the transmembrane domain. Both types of calculation suggested a significant energy barrier to exist in the centre of the (closed) pore, consistent with a "hydrophobic gating" model. Estimations of the PB energy profile as a function of ionic strength suggest a role of the extracellular domain in determining the cation selectivity of the alpha7 nicotinic receptor. These studies illustrate how molecular models of members of the nicotinic receptor superfamily of channels may be used to study structure-function relationships.Keywords
This publication has 68 references indexed in Scilit:
- Direct evaluation of thermal fluctuations in proteins using a single-parameter harmonic potentialPublished by Elsevier ,2005
- Not Ions Alone: Barriers to Ion Permeation in Nanopores and ChannelsJournal of the American Chemical Society, 2004
- Water Dynamics and Dewetting Transitions in the Small Mechanosensitive Channel MscSBiophysical Journal, 2004
- The influence of geometry, surface character, and flexibility on the permeation of ions and water through biological poresPhysical Biology, 2004
- Energetics of ion conduction through the gramicidin channelProceedings of the National Academy of Sciences, 2003
- Ion channel gating: insights via molecular simulationsFEBS Letters, 2003
- A Hydrophobic Gating Mechanism for NanoporesThe Journal of Physical Chemistry B, 2001
- Electrostatics of nanosystems: Application to microtubules and the ribosomeProceedings of the National Academy of Sciences, 2001
- Anisotropy of Fluctuation Dynamics of Proteins with an Elastic Network ModelBiophysical Journal, 2001
- Molecular dynamics with coupling to an external bathThe Journal of Chemical Physics, 1984