| Title : Principles of activation and permeation in an anion-selective Cys-loop receptor - Hibbs_2011_Nature_474_54 |
| Author(s) : Hibbs RE , Gouaux E |
| Ref : Nature , 474 :54 , 2011 |
|
Abstract :
Fast inhibitory neurotransmission is essential for nervous system function and is mediated by binding of inhibitory neurotransmitters to receptors of the Cys-loop family embedded in the membranes of neurons. Neurotransmitter binding triggers a conformational change in the receptor, opening an intrinsic chloride channel and thereby dampening neuronal excitability. Here we present the first three-dimensional structure, to our knowledge, of an inhibitory anion-selective Cys-loop receptor, the homopentameric Caenorhabditis elegans glutamate-gated chloride channel alpha (GluCl), at 3.3 A resolution. The X-ray structure of the GluCl-Fab complex was determined with the allosteric agonist ivermectin and in additional structures with the endogenous neurotransmitter L-glutamate and the open-channel blocker picrotoxin. Ivermectin, used to treat river blindness, binds in the transmembrane domain of the receptor and stabilizes an open-pore conformation. Glutamate binds in the classical agonist site at subunit interfaces, and picrotoxin directly occludes the pore near its cytosolic base. GluCl provides a framework for understanding mechanisms of fast inhibitory neurotransmission and allosteric modulation of Cys-loop receptors. |
| PubMedSearch : Hibbs_2011_Nature_474_54 |
| PubMedID: 21572436 |
Hibbs RE, Gouaux E (2011)
Principles of activation and permeation in an anion-selective Cys-loop receptor
Nature
474 :54
Hibbs RE, Gouaux E (2011)
Nature
474 :54