David C. Reeves

Albert Einstein College of Medicine, New York, New York, United States 
ion channel
"David Reeves"
Mean distance: 16.38 (cluster 16)
Cross-listing: Chemistry Tree

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Collins B, Kane EA, Reeves DC, et al. (2012) Balance of activity between LN(v)s and glutamatergic dorsal clock neurons promotes robust circadian rhythms in Drosophila. Neuron. 74: 706-18
Collins B, Kane EA, Reeves DC, et al. (2012) Balance of Activity between LN vs and Glutamatergic Dorsal Clock Neurons Promotes Robust Circadian Rhythms in Drosophila Neuron. 74: 1138
McKinnon NK, Reeves DC, Akabas MH. (2011) 5-HT3 receptor ion size selectivity is a property of the transmembrane channel, not the cytoplasmic vestibule portals. The Journal of General Physiology. 138: 453-66
Dahdal D, Reeves DC, Ruben M, et al. (2010) Drosophila pacemaker neurons require g protein signaling and GABAergic inputs to generate twenty-four hour behavioral rhythms. Neuron. 68: 964-77
Reeves DC, Liebelt DA, Lakshmanan V, et al. (2006) Chloroquine-resistant isoforms of the Plasmodium falciparum chloroquine resistance transporter acidify lysosomal pH in HEK293 cells more than chloroquine-sensitive isoforms. Molecular and Biochemical Parasitology. 150: 288-99
Reeves DC, Lummis SC. (2006) Detection of human and rodent 5-HT3B receptor subunits by anti-peptide polyclonal antibodies. Bmc Neuroscience. 7: 27
Reeves DC, Jansen M, Bali M, et al. (2005) A role for the beta 1-beta 2 loop in the gating of 5-HT3 receptors. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience. 25: 9358-66
Thompson AJ, Price KL, Reeves DC, et al. (2005) Locating an antagonist in the 5-HT3 receptor binding site using modeling and radioligand binding. The Journal of Biological Chemistry. 280: 20476-82
Goren EN, Reeves DC, Akabas MH. (2004) Loose protein packing around the extracellular half of the GABA(A) receptor beta1 subunit M2 channel-lining segment. The Journal of Biological Chemistry. 279: 11198-205
Reeves DC, Sayed MF, Chau PL, et al. (2003) Prediction of 5-HT3 receptor agonist-binding residues using homology modeling. Biophysical Journal. 84: 2338-44
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