David Reeves' profile
What I do
Neuroscientist
Affiliations
Current affiliations
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- Position
- Instructor
- Company
- Albert Einstein College of Medicine
- Further information
Location
- City:
- New York City, New York, United States
- Hub:
- New York
Interests
Neuroscience, Cellular Physiology and Protein Structure.
Electrophysiology.
Circadian rhythms in Drosophila.
Molecular mechanisms of drug resistance.
Molecular modelling in virtual environments.
Projects
David Reeves has not yet listed any projects.
Publications
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Reeves D, Liebelt D, Lakshmanan V, Roepe P, Fidock D, Akabas M. 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 (2) , 288-99 (2006) (Epub 25 Sep 2006) PubMed ID:(17014918)
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Reeves D, Lummis S. Detection of human and rodent 5-HT3B receptor subunits by anti-peptide polyclonal antibodies. BMC neuroscience , 27 (2006) (Epub 29 Mar 2006) PubMed ID:(16571125)
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Reeves D, Jansen M, Bali M, Lemster T, Akabas M. 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 (41) , 9358-66 (2005) PubMed ID:(16221844 )
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Goren E, Reeves D, Akabas M. Loose protein packing around the extracellular half of the GABA(A) receptor beta1 subunit M2 channel-lining segment. The Journal of biological chemistry (12) , 11198-205 (2004) (Epub 08 Jan 2004) PubMed ID:(14715650)
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Reeves D, Sayed M, Chau P, Price K, Lummis S. Prediction of 5-HT3 receptor agonist-binding residues using homology modeling. Biophysical journal (4) , 2338-44 (2003) PubMed ID:(12668442)
David Reeves' activity on Nature Network
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