Andrew A. George

Washington University, Saint Louis, St. Louis, MO 
"Andrew George"
Mean distance: 15.39 (cluster 7)
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Ochoa V, George AA, Nishi R, et al. (2015) The prototoxin LYPD6B modulates heteromeric α3β4-containing nicotinic acetylcholine receptors, but not α7 homomers. Faseb Journal : Official Publication of the Federation of American Societies For Experimental Biology
Moretti M, Zoli M, George AA, et al. (2014) The novel α7β2-nicotinic acetylcholine receptor subtype is expressed in mouse and human basal forebrain: biochemical and pharmacological characterization. Molecular Pharmacology. 86: 306-17
George AA, Lucero LM, Damaj MI, et al. (2012) Function of human α3β4α5 nicotinic acetylcholine receptors is reduced by the α5(D398N) variant. The Journal of Biological Chemistry. 287: 25151-62
Murray TA, Bertrand D, Papke RL, et al. (2012) α7β2 nicotinic acetylcholine receptors assemble, function, and are activated primarily via their α7-α7 interfaces. Molecular Pharmacology. 81: 175-88
George AA, Lyons-Warren AM, Ma X, et al. (2011) A diversity of synaptic filters are created by temporal summation of excitation and inhibition. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience. 31: 14721-34
George AA, Macleod GT, Zakon HH. (2011) Calcium-dependent phosphorylation regulates neuronal stability and plasticity in a highly precise pacemaker nucleus. Journal of Neurophysiology. 106: 319-31
Paredes DA, Cartford MC, Catlow BJ, et al. (2009) Neurotransmitter release during delay eyeblink classical conditioning: role of norepinephrine in consolidation and effect of age. Neurobiology of Learning and Memory. 92: 267-82
Oestreich J, Dembrow NC, George AA, et al. (2006) A "sample-and-hold" pulse-counting integrator as a mechanism for graded memory underlying sensorimotor adaptation. Neuron. 49: 577-88
Peng JH, Fryer JD, Hurst RS, et al. (2005) High-affinity epibatidine binding of functional, human alpha7-nicotinic acetylcholine receptors stably and heterologously expressed de novo in human SH-EP1 cells. The Journal of Pharmacology and Experimental Therapeutics. 313: 24-35
Wu J, Kuo YP, George AA, et al. (2004) beta-Amyloid directly inhibits human alpha4beta2-nicotinic acetylcholine receptors heterologously expressed in human SH-EP1 cells. The Journal of Biological Chemistry. 279: 37842-51
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