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Molecular Pharmacology|December 1, 1994
The carboxyl terminus of bovine rhodopsin is not required for G protein activationS Osawa, E R WeissThe Journal of Biological Chemistry|December 29, 1995
The effect of carboxyl-terminal mutagenesis of Gt alpha on rhodopsin and guanine nucleotide bindingS Osawa, E R WeissThe American Journal of Physiology|February 1, 1986
Separation of hexose-transporting from nontransporting LLC-PK1 cells on density gradientsE R Weiss, J S CookExperimental Cell Research|January 1, 1995
The coupling of pertussis toxin-sensitive G proteins to phospholipase A2 and adenylyl cyclase in CHO cells expressing bovine rhodopsinC D Dickerson, E R WeissBiochemistry|April 23, 1999
Binding of arrestin to cytoplasmic loop mutants of bovine rhodopsinD Raman, S Osawa, E R WeissPerspectives on Developmental Neurobiology|October 26, 1999
Why do neurotransmitters act like growth factors?E R Weiss, P Maness, J M LauderDevelopmental Neuroscience|February 15, 2001
Activation of 5-HT receptors that stimulate the adenylyl cyclase pathway positively regulates IGF-I in cultured craniofacial mesenchymal cellsH W Lambert, E R Weiss, J M LauderThe Journal of Biological Chemistry|May 5, 1988
Mapping sites of interaction between rhodopsin and transducin using rhodopsin antipeptide antibodiesE R Weiss, D J Kelleher, G L JohnsonBiochemistry|June 21, 1994
Effects of carboxyl-terminal truncation on the stability and G protein-coupling activity of bovine rhodopsinE R Weiss, S Osawa, W Shi, et al.The Journal of Biological Chemistry|February 3, 1995
Rhodopsin mutants discriminate sites important for the activation of rhodopsin kinase and GtW Shi, S Osawa, C D Dickerson, et al.Pageof 4