Probing solution structure of the pentameric ligand-gated ion channel GLIC by small-angle neutron scattering

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Pentameric ligand-gated ion channels undergo subtle conformational cycling to control electrochemical signal transduction in many kingdoms of life. Several crystal structures have now been reported in this family, but the functional relevance of such models remains unclear. Here, we used small-angle neutron scattering (SANS) to probe ambient solution-phase properties of the pHgated bacterial ion channel GLIC under resting and activating conditions. Data collection was optimized by inline paused-flow size-exclusion chromatography, and exchanging into deuterated detergent to hide the micelle contribution. Resting-state GLIC was the best-fit crystal structure to SANS curves, with no evidence for divergent mechanisms. Moreover, enhanced-sampling moleculardynamics simulations enabled differential modeling in resting versus activating conditions, with the latter corresponding to an intermediate ensemble of both the extracellular and transmembrane domains. This work demonstrates state-dependent changes in a pentameric ion channel by SANS, an increasingly accessible method for macromolecular characterization with the coming generation of neutron sources.

Original languageEnglish
Article number2108006118
JournalProceedings of the National Academy of Sciences of the United States of America
Volume118
Issue number37
Number of pages9
ISSN0027-8424
DOIs
Publication statusPublished - 14 Sep 2021

    Research areas

  • Cys-loop receptors, gating, small-angle neutron scattering, molecular dynamics, deuterated detergent, X-RAY-STRUCTURE, ACETYLCHOLINE-RECEPTOR, GLOEOBACTER-VIOLACEUS, MEMBRANE-PROTEINS, OPEN PROBABILITY, OPEN STATE, SEC-SANS, MECHANISM, PORE, CONFORMATION

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