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WDR5 Stabilizes Actin Architecture to Promote Multiciliated Cell Formation. , Kulkarni SS , Griffin JN, Date PP, Liem KF, Khokha MK ., Dev Cell. September 10, 2018; 46 (5): 595-610.e3.
Vasopressin receptors V1a and V2 are not osmosensors. , Lykke K, Assentoft M, Fenton RA, Rosenkilde MM, MacAulay N., Physiol Rep. August 1, 2015; 3 (8):
BMP signalling controls the construction of vertebrate mucociliary epithelia. , Cibois M, Luxardi G , Chevalier B, Thomé V, Mercey O, Zaragosi LE , Barbry P, Pasini A, Marcet B, Kodjabachian L ., Development. July 1, 2015; 142 (13): 2352-63.
A secretory cell type develops alongside multiciliated cells, ionocytes and goblet cells, and provides a protective, anti-infective function in the frog embryonic mucociliary epidermis. , Dubaissi E , Rousseau K, Lea R, Soto X , Nardeosingh S, Schweickert A , Amaya E , Thornton DJ , Papalopulu N ., Development. April 1, 2014; 141 (7): 1514-25.
Xenopus embryonic epidermis as a mucociliary cellular ecosystem to assess the effect of sex hormones in a non-reproductive context. , Castillo-Briceno P , Kodjabachian L ., Front Zool. February 6, 2014; 11 (1): 9.
Urotensin II receptor (UTR) exists in hyaline chondrocytes: a study of peripheral distribution of UTR in the African clawed frog, Xenopus laevis. , Konno N , Fujii Y, Imae H, Kaiya H, Mukuda T, Miyazato M, Matsuda K, Uchiyama M., Gen Comp Endocrinol. May 1, 2013; 185 44-56.
Identification of domains within the V-ATPase accessory subunit Ac45 involved in V-ATPase transport and Ca2+-dependent exocytosis. , Jansen EJ, van Bakel NH, Olde Loohuis NF, Hafmans TG, Arentsen T, Coenen AJ, Scheenen WJ, Martens GJ., J Biol Chem. August 10, 2012; 287 (33): 27537-46.
Embryonic frog epidermis: a model for the study of cell-cell interactions in the development of mucociliary disease. , Dubaissi E , Papalopulu N ., Dis Model Mech. March 1, 2011; 4 (2): 179-92.
Homologous and heterologous acute desensitization of vasopressin V1a receptor in Xenopus oocytes. , Ancellin N , Morel A., Cell Signal. March 1, 1998; 10 (3): 217-23.
Role of protein kinase C and carboxyl-terminal region in acute desensitization of vasopressin V1a receptor. , Ancellin N , Preisser L, Corman B, Morel A., FEBS Lett. August 18, 1997; 413 (2): 323-6.
The role of putative glycosylation sites in the extracellular loops of the vasopressin V1a receptor. , Hawtin SR, Davies AR, Matthews G, Wheatley M., Biochem Soc Trans. August 1, 1997; 25 (3): 435S.
Towards understanding the role of the first extracellular loop for the binding of peptide hormones to G-protein coupled receptors. , Trumpp-Kallmeyer S, Chini B, Mouillac B, Barberis C, Hoflack J, Hibert M., Pharm Acta Helv. September 1, 1995; 70 (3): 255-62.
Molecular cloning and functional expression of a cDNA encoding the human V1b vasopressin receptor. , Sugimoto T, Saito M, Mochizuki S, Watanabe Y, Hashimoto S, Kawashima H., J Biol Chem. October 28, 1994; 269 (43): 27088-92.
Mechanism of desensitization of the cloned vasopressin V1a receptor expressed in Xenopus oocytes. , Nathanson MH, Burgstahler AD, Orloff JJ, Mani A, Moyer MS., Am J Physiol. July 1, 1994; 267 (1 Pt 1): C94-103.
Molecular cloning and expression of rat V1a and V2 arginine vasopressin receptors. , Morel A, Lolait SJ, Brownstein MJ., Regul Pept. April 29, 1993; 45 (1-2): 53-9.
Mechanisms of subcellular cytosolic Ca2+ signaling evoked by stimulation of the vasopressin V1a receptor. , Nathanson MH, Moyer MS, Burgstahler AD, O'Carroll AM, Brownstein MJ, Lolait SJ., J Biol Chem. November 15, 1992; 267 (32): 23282-9.
Molecular cloning and expression of a rat V1a arginine vasopressin receptor. , Morel A, O'Carroll AM, Brownstein MJ, Lolait SJ., Nature. April 9, 1992; 356 (6369): 523-6.