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Cellular Signalling|October 30, 1998
G-protein-linked receptors as tyrosine kinase substrates: new paradigms in signal integrationC C Malbon, V KaroorThe Journal of Biological Chemistry|November 15, 1996
Insulin-like growth factor receptor-1 stimulates phosphorylation of the beta2-adrenergic receptor in vivo on sites distinct from those phosphorylated in response to insulinV Karoor, C C MalbonProgress in Neurobiology|April 1, 1996
Regulating expression and function of G-protein-linked receptorsV Karoor, M Shih, B Tholanikunnel, et al.The Journal of Biological Chemistry|November 26, 1998
Insulin stimulates sequestration of beta-adrenergic receptors and enhanced association of beta-adrenergic receptors with Grb2 via tyrosine 350V Karoor, L Wang, H Y Wang, et al.The Journal of Biological Chemistry|October 27, 1995
Phosphorylation of tyrosyl residues 350/354 of the beta-adrenergic receptor is obligatory for counterregulatory effects of insulinV Karoor, K Baltensperger, H Paul, et al.The Journal of Biological Chemistry|January 12, 1996
The beta-adrenergic receptor is a substrate for the insulin receptor tyrosine kinaseK Baltensperger, V Karoor, H Paul, et al.Molecular Endocrinology (Baltimore, Md.)|October 17, 1998
Phosphorylation of the angiotensin II (AT1A) receptor carboxyl terminus: a role in receptor endocytosisW G Thomas, T J Motel, C E Kule, et al.Hypertension (Dallas, Tex. : 1979)|June 17, 2000
Cardiotrophin-1 increases angiotensinogen mRNA in rat cardiac myocytes through STAT3 : an autocrine loop for hypertrophyJ Fukuzawa, G W Booz, R A Hunt, et al.Journal of Molecular and Cellular Cardiology|February 28, 1998
Molecular mechanisms of angiotensin II in modulating cardiac function: intracardiac effects and signal transduction pathwaysD E Dostal, R A Hunt, C E Kule, et al.The Journal of Biological Chemistry|November 25, 1994
Utilization of selenocysteyl-tRNA[Ser]Sec and seryl-tRNA[Ser]Sec in protein synthesisJ E Jung, V Karoor, M G Sandbaken, et al.Pageof 1