Granneman, J G (2001) The putative beta4-adrenergic receptor is a novel state of the beta1-adrenergic receptor. Am J Physiol Endocrinol Metab 280:E199-202
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Chaudhry, A; Granneman, J G (1999) Differential regulation of functional responses by beta-adrenergic receptor subtypes in brown adipocytes. Am J Physiol 277:R147-53
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Granneman, J G; Zhai, Y; Zhu, Z et al. (1998) Molecular characterization of human and rat RGS 9L, a novel splice variant enriched in dopamine target regions, and chromosomal localization of the RGS 9 gene. Mol Pharmacol 54:687-94
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Granneman, J G; Zhai, Y; Lahners, K N (1997) Selective up-regulation of alpha1a-adrenergic receptor protein and mRNA in brown adipose tissue by neural and beta3-adrenergic stimulation. Mol Pharmacol 51:644-50
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Chaudhry, A; Granneman, J G (1997) Effect of hypothyroidism on adenylyl cyclase activity and subtype gene expression in brown adipose tissue. Am J Physiol 273:R762-7
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Chaudhry, A; Muffler, L A; Yao, R et al. (1996) Perinatal expression of adenylyl cyclase subtypes in rat brown adipose tissue. Am J Physiol 270:R755-60
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Granneman, J G (1995) Expression of adenylyl cyclase subtypes in brown adipose tissue: neural regulation of type III. Endocrinology 136:2007-12
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Cohen, M L; Granneman, J G; Chaudhry, A et al. (1995) Is the ""atypical"" beta-receptor in the rat stomach fundus the rat beta 3 receptor? J Pharmacol Exp Ther 272:446-51
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Granneman, J G; Lahners, K N (1995) Regulation of mouse beta 3-adrenergic receptor gene expression and mRNA splice variants in adipocytes. Am J Physiol 268:C1040-4
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Granneman, J G (1995) Why do adipocytes make the beta 3 adrenergic receptor? Cell Signal 7:9-15
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