Showing results (41-50 of 61) with videos related to
Sort By:
Pageof 7
Endocrinology|October 16, 2004
Modification of the terminal residue of apelin-13 antagonizes its hypotensive actionDennis K Lee, Victor R Saldivia, Tuan Nguyen, et al.The Journal of Biological Chemistry|January 5, 2002
Distinct residues in the carboxyl tail mediate agonist-induced desensitization and internalization of the human dopamine D1 receptorMichael Lamey, Miles Thompson, George Varghese, et al.European Journal of Pharmacology|February 2, 2008
Mu-opioid receptor heterooligomer formation with the dopamine D1 receptor as directly visualized in living cellsJason R Juhasz, Ahmed Hasbi, Asim J Rashid, et al.Proceedings of the National Academy of Sciences of the United States of America|December 2, 2009
Calcium signaling cascade links dopamine D1-D2 receptor heteromer to striatal BDNF production and neuronal growthAhmed Hasbi, Theresa Fan, Mohammad Alijaniaram, et al.Molecular Pharmacology|January 28, 2009
Calcium signaling by dopamine D5 receptor and D5-D2 receptor hetero-oligomers occurs by a mechanism distinct from that for dopamine D1-D2 receptor hetero-oligomersChristopher H So, Vaneeta Verma, Mohammad Alijaniaram, et al.Genomics|October 16, 2003
Discovery of a null mutation in a human trace amine receptor geneWilliam B Vanti, Pierandrea Muglia, Tuan Nguyen, et al.Psychopharmacology|October 16, 2009
Restoration of amphetamine-induced locomotor sensitization in dopamine D1 receptor-deficient miceMufida B El-Ghundi, Theresa Fan, Joanna M Karasinska, et al.Biochemistry|October 19, 2007
Trafficking of preassembled opioid mu-delta heterooligomer-Gz signaling complexes to the plasma membrane: coregulation by agonistsAhmed Hasbi, Tuan Nguyen, Theresa Fan, et al.The Journal of Biological Chemistry|August 24, 2005
Dopamine receptor oligomerization visualized in living cellsBrian F O'Dowd, Xiaodong Ji, Mohammad Alijaniaram, et al.The Journal of Biological Chemistry|September 25, 2010
The dopamine D1-D2 receptor heteromer localizes in dynorphin/enkephalin neurons: increased high affinity state following amphetamine and in schizophreniaMelissa L Perreault, Ahmed Hasbi, Mohammed Alijaniaram, et al.Pageof 7