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ACS Chemical Neuroscience|November 17, 2020
Proline Residues Contribute to Efficient GABAp Receptor FunctionBenjamin W Baker, Dennis A Dougherty, Sarah C R Lummis
Chemistry & Biology|December 20, 2014
Structural requirements in the transmembrane domain of GLIC revealed by incorporation of noncanonical histidine analogsMatthew Rienzo, Sarah C R Lummis, Dennis A Dougherty
Biochemistry|June 22, 2018
Probing Proline Residues in the Prokaryotic Ligand-Gated Ion Channel, ELICRichard Mosesso, Dennis A Dougherty, Sarah C R Lummis
ACS Chemical Neuroscience|July 6, 2019
Proline Residues in the Transmembrane/Extracellular Domain Interface Loops Have Different Behaviors in 5-HT3 and nACh ReceptorsRichard Mosesso, Dennis A Dougherty, Sarah C R Lummis
ACS Chemical Neuroscience|July 22, 2022
5-HT3 Receptor MX Helix Contributes to Receptor FunctionJames Mocatta, Susanne M Mesoy, Dennis A Dougherty, et al.
The Journal of Neuroscience : the Official Journal of the Society for Neuroscience|August 26, 2011
Two amino acid residues contribute to a cation-π binding interaction in the binding site of an insect GABA receptorSarah C R Lummis, Ian McGonigle, Jamie A Ashby, et al.
The Journal of Biological Chemistry|December 16, 2015
Perturbation of Critical Prolines in Gloeobacter violaceus Ligand-gated Ion Channel (GLIC) Supports Conserved Gating Motions among Cys-loop ReceptorsMatthew Rienzo, Angela R Rocchi, Stephanie D Threatt, et al.
The Journal of Neuroscience : the Official Journal of the Society for Neuroscience|January 26, 2007
Unnatural amino acid mutagenesis of the GABA(A) receptor binding site residues reveals a novel cation-pi interaction between GABA and beta 2Tyr97Claire L Padgett, Ariele P Hanek, Henry A Lester, et al.
The Journal of Neuroscience : the Official Journal of the Society for Neuroscience|October 16, 2004
Tyrosine residues that control binding and gating in the 5-hydroxytryptamine3 receptor revealed by unnatural amino acid mutagenesisDarren L Beene, Kerry L Price, Henry A Lester, et al.
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