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Biochemical Pharmacology|May 12, 2005
Galphaq-coupled receptor signaling enhances adenylate cyclase type 6 activationMichael A Beazely, Val J WattsCellular and Molecular Neurobiology|March 19, 2013
Differential effects of AGS3 expression on D(2L) dopamine receptor-mediated adenylyl cyclase signalingJason M Conley, Val J WattsNeurotherapeutics : the Journal of the American Society for Experimental Neurotherapeutics|April 4, 2013
Developing therapeutic antibodies for neurodegenerative diseaseY Joy Yu, Ryan J WattsCurrent Opinion in Chemical Biology|April 11, 2013
Bispecific antibodies for delivery into the brainRyan J Watts, Mark S DennisMethods in Molecular Biology (Clifton, N.J.)|February 12, 2018
Analyzing Protein Domain Interactions in Chemoreceptors by In Vivo PEGylationKylie J Watts, Mark S JohnsonJournal of Environmental Science and Health. Part A, Toxic/Hazardous Substances & Environmental Engineering|December 6, 2017
Effect of wastewater quality parameters on coliform inactivation by tin oxide anodesAmy L Teel, Richard J WattsThe Biochemical Journal|September 1, 1970
Metabolism of the cellular slime mould Dictyostelium discoideum grown in axenic cultureJ M Ashworth, D J WattsBiochemical Pharmacology|March 30, 2005
Galphaq potentiation of adenylate cyclase type 9 activity through a Ca2+/calmodulin-dependent pathwayMedhane G Cumbay, Val J WattsScience'S STKE : Signal Transduction Knowledge Environment|November 22, 2007
Adenylyl cyclase 5: a new clue in the search for the "fountain of youth"?Julia A Chester, Val J WattsAnnual Review of Neuroscience|April 7, 2010
Connecting vascular and nervous system development: angiogenesis and the blood-brain barrierStephen J Tam, Ryan J WattsPageof 94