skip to main content
OSTI.GOV title logo U.S. Department of Energy
Office of Scientific and Technical Information

Title: Chasing the open-state structure of pentameric ligand-gated ion channels

Journal Article · · Journal of General Physiology

Remarkable advances have been made toward the structural characterization of ion channels in the last two decades. However, the unambiguous assignment of well-defined functional states to the obtained structural models has proved challenging. In the case of the superfamily of nicotinic-receptor channels (also referred to as pentameric ligand-gated ion channels [pLGICs]), for example, two different types of model of the open-channel conformation have been proposed on the basis of structures solved to resolutions better than 4.0 Å. At the level of the transmembrane pore, the open-state models of the proton-gated pLGIC fromGloeobacter violaceus(GLIC) and the invertebrate glutamate-gated Clchannel (GluCl) are very similar to each other, but that of the glycine receptor (GlyR) is considerably wider. Indeed, the mean distances between the axis of ion permeation and the Cα atoms at the narrowest constriction of the pore (position -2') differ by ~2 Å in these two classes of model, a large difference when it comes to understanding the physicochemical bases of ion conduction and charge selectivity. Here, we take advantage of the extreme open-channel stabilizing effect of mutations at pore-facing position 9'. We find that the I9'A mutation slows down entry into desensitization of GLIC to the extent that macroscopic currents decay only slightly by the end of pH 4.5 solution applications to the extracellular side for several minutes. We crystallize (at pH 4.5) two variants of GLIC carrying this mutation and solve their structures to resolutions of 3.12 Å and 3.36 Å. Furthermore, we perform all-atom molecular dynamics simulations of ion permeation and picrotoxinin block, using the different open-channel structural models. On the basis of these results, we favor the notion that the open-channel structure of pLGICs from animals is much closer to that of the narrow models (of GLIC and GluCl) than it is to that of the GlyR.

Research Organization:
Argonne National Lab. (ANL), Argonne, IL (United States). Advanced Photon Source (APS)
Sponsoring Organization:
USDOE Office of Science (SC)
OSTI ID:
1438912
Journal Information:
Journal of General Physiology, Vol. 149, Issue 12; ISSN 0022-1295
Country of Publication:
United States
Language:
ENGLISH

Similar Records

Ion Selectivity Mechanism in a Bacterial Pentameric Ligand-Gated Ion Channel
Journal Article · Sat Jan 01 00:00:00 EST 2011 · Journal of the American Chemical Society · OSTI ID:1438912

Ion Selectivity Mechanism in a Bacterial Pentameric Ligand-Gated Ion Channel
Journal Article · Fri Jan 01 00:00:00 EST 2010 · Biophysical Journal · OSTI ID:1438912

A chimeric prokaryotic pentameric ligand–gated channel reveals distinct pathways of activation
Journal Article · Mon Sep 28 00:00:00 EDT 2015 · Journal of General Physiology · OSTI ID:1438912

Related Subjects