Bouzat_2000_J.Gen.Physiol_115_663

Reference

Title : Nicotinic receptor fourth transmembrane domain: hydrogen bonding by conserved threonine contributes to channel gating kinetics - Bouzat_2000_J.Gen.Physiol_115_663
Author(s) : Bouzat C , Barrantes FJ , Sine S
Ref : Journal of General Physiology , 115 :663 , 2000
Abstract :

The fourth transmembrane domain (M4) of the nicotinic acetylcholine receptor (AChR) contributes to the kinetics of activation, yet its close association with the lipid bilayer makes it the outermost of the transmembrane domains. To investigate mechanistic and structural contributions of M4 to AChR activation, we systematically mutated alphaT422, a conserved residue that has been labeled by hydrophobic probes, and evaluated changes in rate constants underlying ACh binding and channel gating steps. Aromatic and nonpolar mutations of alphaT422 selectively affect the channel gating step, slowing the rate of opening two- to sevenfold, and speeding the rate of closing four- to ninefold. Additionally, kinetic modeling shows a second doubly liganded open state for aromatic and nonpolar mutations. In contrast, serine and asparagine mutations of alphaT422 largely preserve the kinetics of the wild-type AChR. Thus, rapid and efficient gating of the AChR channel depends on a hydrogen bond involving the side chain at position 422 of the M4 transmembrane domain.

PubMedSearch : Bouzat_2000_J.Gen.Physiol_115_663
PubMedID: 10779322

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Citations formats

Bouzat C, Barrantes FJ, Sine S (2000)
Nicotinic receptor fourth transmembrane domain: hydrogen bonding by conserved threonine contributes to channel gating kinetics
Journal of General Physiology 115 :663

Bouzat C, Barrantes FJ, Sine S (2000)
Journal of General Physiology 115 :663