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Summary Expression Phenotypes Gene Literature (17) GO Terms (4) Nucleotides (260) Proteins (56) Interactants (146) Wiki
XB-GENEPAGE-479547

Papers associated with atp6v1a



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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.

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