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Endocrinology|August 1, 1981
Studies on the mechanism of luteinizing hormone-induced desensitization of the rabbit follicular adenylyl cyclase system in vitroM Hunzicker-Dunn, L BirnbaumerThe American Journal of Physiology|March 1, 1988
Direct G protein gating of ion channelsA M Brown, L BirnbaumerEndocrinology|July 1, 1976
Adenylyl cyclase activities in ovarian tissues. II. Regulation of responsiveness to LH, FSH, and PGE1 in the rabbitM Hunzicker-Dunn, L BirnbaumerEndocrinology|November 1, 1983
Effects of estradiol treatment on rabbit luteal adenylyl cyclase: loss of luteinizing hormone receptors and attenuation of the regulatory N component activityH J Kirchick, L BirnbaumerEndocrinology|July 1, 1976
Adenylyl cyclase activities in ovarian tissues. IV. Gonadotrophin-induced desensitization of the luteal adenylyl cyclase throughout pregnancy and pseudopregnancy in the rabbit and the ratM Hunzicker-Dunn, L BirnbaumerFASEB Journal : Official Publication of the Federation of American Societies for Experimental Biology|June 1, 1993
Molecular and functional diversity of mammalian Gs-stimulated adenylyl cyclasesR IyengarThe Journal of Biological Chemistry|November 10, 1981
Hysteretic activation of adenylyl cyclases. II. Mg ion regulation of the activation of the regulatory component as analyzed by reconstitutionR IyengarThe Journal of Biological Chemistry|February 7, 1998
Receptor-activated Ca2+ influx via human Trp3 stably expressed in human embryonic kidney (HEK)293 cells. Evidence for a non-capacitative Ca2+ entryX Zhu, M Jiang, L BirnbaumerNeuroscience|May 31, 2011
Membrane depolarization combined with Gq-activated G-protein-coupled receptors induce transient receptor potential channel 1 (TRPC1)- dependent potentiation of catecholamine releaseM Marom, L Birnbaumer, D AtlasPageof 38