Literature DB >> 15318223

Coupling of agonist binding to channel gating in an ACh-binding protein linked to an ion channel.

Cecilia Bouzat1, Fernanda Gumilar, Guillermo Spitzmaul, Hai-Long Wang, Diego Rayes, Scott B Hansen, Palmer Taylor, Steven M Sine.   

Abstract

Neurotransmitter receptors from the Cys-loop superfamily couple the binding of agonist to the opening of an intrinsic ion pore in the final step in rapid synaptic transmission. Although atomic resolution structural data have recently emerged for individual binding and pore domains, how they are linked into a functional unit remains unknown. Here we identify structural requirements for functionally coupling the two domains by combining acetylcholine (ACh)-binding protein, whose structure was determined at atomic resolution, with the pore domain from the serotonin type-3A (5-HT3A) receptor. Only when amino-acid sequences of three loops in ACh-binding protein are changed to their 5-HT3A counterparts does ACh bind with low affinity characteristic of activatable receptors, and trigger opening of the ion pore. Thus functional coupling requires structural compatibility at the interface of the binding and pore domains. Structural modelling reveals a network of interacting loops between binding and pore domains that mediates this allosteric coupling process.

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Year:  2004        PMID: 15318223     DOI: 10.1038/nature02753

Source DB:  PubMed          Journal:  Nature        ISSN: 0028-0836            Impact factor:   49.962


  124 in total

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Review 8.  Molecular mechanisms of acetylcholine receptor-lipid interactions: from model membranes to human biology.

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9.  Functional polymorphisms in the human beta4 subunit of nicotinic acetylcholine receptors.

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10.  Interaction of the aromatics Tyr-72/Trp-288 in the interface of the extracellular and transmembrane domains is essential for proton gating of acid-sensing ion channels.

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