Jose A. Matta, Ph.D.
Affiliations: | 2008 | Georgetown University Medical Center, Washington, DC, United States |
Area:
Neuroscience Biology, Physiology BiologyGoogle:
"Jose Matta"Mean distance: 42746.4
Parents
Sign in to add mentorGerard P. Ahern | grad student | 2008 | Georgetown University Medical Center | |
(Multimodal regulation of transient receptor potential ion channels.) | ||||
John T. Isaac | post-doc | NIH |
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Publications
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Knowland D, Gu S, Eckert WA, et al. (2020) Functional α6β4 acetylcholine receptor expression enables pharmacological testing of nicotinic agonists with analgesic properties. The Journal of Clinical Investigation |
Dhara M, Matta JA, Lei M, et al. (2020) Polyamine regulation of ion channel assembly and implications for nicotinic acetylcholine receptor pharmacology. Nature Communications. 11: 2799 |
Gu S, Matta JA, Davini WB, et al. (2019) α6-Containing Nicotinic Acetylcholine Receptor Reconstitution Involves Mechanistically Distinct Accessory Components. Cell Reports. 26: 866-874.e3 |
Maher MP, Matta JA, Gu S, et al. (2017) Getting a Handle on Neuropharmacology by Targeting Receptor-Associated Proteins. Neuron. 96: 989-1001 |
Maher MP, Wu N, Ravula S, et al. (2016) Discovery and characterization of AMPA receptor modulators selective for TARP-γ8. The Journal of Pharmacology and Experimental Therapeutics |
Matta JA, Pelkey KA, Craig MT, et al. (2013) Developmental origin dictates interneuron AMPA and NMDA receptor subunit composition and plasticity. Nature Neuroscience. 16: 1032-41 |
Matta JA, Ashby MC, Sanz-Clemente A, et al. (2011) mGluR5 and NMDA receptors drive the experience- and activity-dependent NMDA receptor NR2B to NR2A subunit switch. Neuron. 70: 339-51 |
Matta JA, Ahern GP. (2011) TRPV1 and synaptic transmission. Current Pharmaceutical Biotechnology. 12: 95-101 |
Sanz-Clemente A, Matta JA, Isaac JT, et al. (2010) Casein kinase 2 regulates the NR2 subunit composition of synaptic NMDA receptors. Neuron. 67: 984-96 |
Evers DM, Matta JA, Hoe HS, et al. (2010) Plk2 attachment to NSF induces homeostatic removal of GluA2 during chronic overexcitation. Nature Neuroscience. 13: 1199-207 |