Sine_2008_Ann.N.Y.Acad.Sci_1132_53

Reference

Title : Recent structural and mechanistic insights into endplate acetylcholine receptors - Sine_2008_Ann.N.Y.Acad.Sci_1132_53
Author(s) : Sine SM , Gao F , Lee WY , Mukhtasimova N , Wang HL , Engel AG
Ref : Annals of the New York Academy of Sciences , 1132 :53 , 2008
Abstract :

Voluntary movement mediated by skeletal muscle relies on endplate acetylcholine receptors (AChR) to detect nerve-released ACh and depolarize the muscle fiber. Recent structural and mechanistic studies of the endplate AChR have catalyzed a leap in our understanding of the molecular steps in this chemical-to-electrical transduction process. Studies of acetylcholine binding protein (AChBP) give insight into ACh recognition, the first step in activation of the AChR. An atomic structural model of the Torpedo AChR at a resolution of 0.4 nm, together with single-ion channel recording methods, allow tracing of the link between the agonist binding event and gating of the ion channel, as well as determination of how the channel moves when it opens to allow flow of cations. Structural models of the human AChR enable precise mapping of disease-causing mutations, while studies of the speed with which single AChR channels open and close cast light on pathogenic mechanisms.

PubMedSearch : Sine_2008_Ann.N.Y.Acad.Sci_1132_53
PubMedID: 18567853

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Citations formats

Sine SM, Gao F, Lee WY, Mukhtasimova N, Wang HL, Engel AG (2008)
Recent structural and mechanistic insights into endplate acetylcholine receptors
Annals of the New York Academy of Sciences 1132 :53

Sine SM, Gao F, Lee WY, Mukhtasimova N, Wang HL, Engel AG (2008)
Annals of the New York Academy of Sciences 1132 :53