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Summary Expression Phenotypes Gene Literature (175) GO Terms (2) Nucleotides (153) Proteins (38) Interactants (279) Wiki
XB--1217295

Papers associated with aqp1



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Transmembrane water-flux through SLC4A11: a route defective in genetic corneal diseases., Vilas GL, Loganathan SK, Liu J, Riau AK, Young JD, Mehta JS, Vithana EN, Casey JR., Hum Mol Genet. November 15, 2013; 22 (22): 4579-90.                    


Lung epithelial branching program antagonizes alveolar differentiation., Chang DR, Martinez Alanis D, Miller RK, Ji H, Akiyama H, McCrea PD, Chen J., Proc Natl Acad Sci U S A. November 5, 2013; 110 (45): 18042-51.    


Functional characterization of an AQP0 missense mutation, R33C, that causes dominant congenital lens cataract, reveals impaired cell-to-cell adhesion., Kumari SS, Gandhi J, Mustehsan MH, Eren S, Varadaraj K., Exp Eye Res. November 1, 2013; 116 371-85.                  


Osmotic water transport in aquaporins: evidence for a stochastic mechanism., Zeuthen T, Alsterfjord M, Beitz E, MacAulay N., J Physiol. October 15, 2013; 591 (20): 5017-29.


Identification and characterisation of a functional aquaporin water channel (Anomala cuprea DRIP) in a coleopteran insect., Nagae T, Miyake S, Kosaki S, Azuma M., J Exp Biol. July 15, 2013; 216 (Pt 14): 2564-72.


AqF026 is a pharmacologic agonist of the water channel aquaporin-1., Yool AJ, Morelle J, Cnops Y, Verbavatz JM, Campbell EM, Beckett EA, Booker GW, Flynn G, Devuyst O., J Am Soc Nephrol. June 1, 2013; 24 (7): 1045-52.


Relative CO(2)/NH(3) selectivities of mammalian aquaporins 0-9., Geyer RR, Musa-Aziz R, Qin X, Boron WF., Am J Physiol Cell Physiol. May 15, 2013; 304 (10): C985-94.


Purinergic signalling - a possible mechanism for KCNQ1 channel response to cell volume challenges., Hammami S, Willumsen NJ, Meinild AK, Klaerke DA, Novak I., Acta Physiol (Oxf). March 1, 2013; 207 (3): 503-15.


Regulation of AQP0 water permeability is enhanced by cooperativity., Németh-Cahalan KL, Clemens DM, Hall JE., J Gen Physiol. March 1, 2013; 141 (3): 287-95.          


Discovery of novel human aquaporin-1 blockers., Seeliger D, Zapater C, Krenc D, Haddoub R, Flitsch S, Beitz E, Cerdà J, de Groot BL., ACS Chem Biol. January 18, 2013; 8 (1): 249-56.


Human AQP1 is a constitutively open channel that closes by a membrane-tension-mediated mechanism., Ozu M, Dorr RA, Gutiérrez F, Politi MT, Toriano R., Biophys J. January 8, 2013; 104 (1): 85-95.


Aquaporin-2: new mutations responsible for autosomal-recessive nephrogenic diabetes insipidus-update and epidemiology., Bichet DG, El Tarazi A, Matar J, Lussier Y, Arthus MF, Lonergan M, Bockenhauer D, Bissonnette P., Clin Kidney J. June 1, 2012; 5 (3): 195-202.          


Stimulation of aquaporin-mediated fluid transport by cyclic GMP in human retinal pigment epithelium in vitro., Baetz NW, Stamer WD, Yool AJ., Invest Ophthalmol Vis Sci. April 24, 2012; 53 (4): 2127-32.


The activity of human aquaporin 1 as a cGMP-gated cation channel is regulated by tyrosine phosphorylation in the carboxyl-terminal domain., Campbell EM, Birdsell DN, Yool AJ., Mol Pharmacol. January 1, 2012; 81 (1): 97-105.


Dual neofunctionalization of a rapidly evolving aquaporin-1 paralog resulted in constrained and relaxed traits controlling channel function during meiosis resumption in teleosts., Zapater C, Chauvigné F, Norberg B, Finn RN, Cerdà J., Mol Biol Evol. November 1, 2011; 28 (11): 3151-69.


Water flux through human aquaporin 1: inhibition by intracellular furosemide and maximal response with high osmotic gradients., Ozu M, Dorr RA, Teresa Politi M, Parisi M, Toriano R., Eur Biophys J. June 1, 2011; 40 (6): 737-46.


Aquaporin water channel AgAQP1 in the malaria vector mosquito Anopheles gambiae during blood feeding and humidity adaptation., Liu K, Tsujimoto H, Cha SJ, Agre P, Rasgon JL., Proc Natl Acad Sci U S A. April 12, 2011; 108 (15): 6062-6.


Enhancement of proton conductance by mutations of the selectivity filter of aquaporin-1., Li H, Chen H, Steinbronn C, Wu B, Beitz E, Zeuthen T, Voth GA., J Mol Biol. April 8, 2011; 407 (4): 607-20.


Identification and characterization of functional aquaporin water channel protein from alimentary tract of whitefly, Bemisia tabaci., Mathew LG, Campbell EM, Yool AJ, Fabrick JA., Insect Biochem Mol Biol. March 1, 2011; 41 (3): 178-90.


Requirement for asparagine in the aquaporin NPA sequence signature motifs for cation exclusion., Wree D, Wu B, Zeuthen T, Beitz E., FEBS J. March 1, 2011; 278 (5): 740-8.


Molecular and functional characterization of catfish (Heteropneustes fossilis) aquaporin-1b: changes in expression during ovarian development and hormone-induced follicular maturation., Chaube R, Chauvigné F, Tingaud-Sequeira A, Joy KP, Acharjee A, Singh V, Cerdà J., Gen Comp Endocrinol. January 1, 2011; 170 (1): 162-71.


Frog oocytes to unveil the structure and supramolecular organization of human transport proteins., Bergeron MJ, Boggavarapu R, Meury M, Ucurum Z, Caron L, Isenring P, Hediger MA, Fotiadis D., PLoS One. January 1, 2011; 6 (7): e21901.          


Sharpey-Schafer lecture: gas channels., Boron WF., Exp Physiol. December 1, 2010; 95 (12): 1107-30.                      


Cloning and characterization of a zebrafish homologue of human AQP1: a bifunctional water and gas channel., Chen LM, Zhao J, Musa-Aziz R, Pelletier MF, Drummond IA, Boron WF., Am J Physiol Regul Integr Comp Physiol. November 1, 2010; 299 (5): R1163-74.


The zebrafish genome encodes the largest vertebrate repertoire of functional aquaporins with dual paralogy and substrate specificities similar to mammals., Tingaud-Sequeira A, Calusinska M, Finn RN, Chauvigné F, Lozano J, Cerdà J., BMC Evol Biol. February 11, 2010; 10 38.                


Arsenic transport by zebrafish aquaglyceroporins., Hamdi M, Sanchez MA, Beene LC, Liu Q, Landfear SM, Rosen BP, Liu Z., BMC Mol Biol. November 3, 2009; 10 104.            


Expression and functional characterization of four aquaporin water channels from the European eel (Anguilla anguilla)., MacIver B, Cutler CP, Yin J, Hill MG, Zeidel ML, Hill WG., J Exp Biol. September 1, 2009; 212 (17): 2856-63.


Concerted action of two cation filters in the aquaporin water channel., Wu B, Steinbronn C, Alsterfjord M, Zeuthen T, Beitz E., EMBO J. August 5, 2009; 28 (15): 2188-94.


Inhibition of aquaporin-1 and aquaporin-4 water permeability by a derivative of the loop diuretic bumetanide acting at an internal pore-occluding binding site., Migliati E, Meurice N, DuBois P, Fang JS, Somasekharan S, Beckett E, Flynn G, Yool AJ., Mol Pharmacol. July 1, 2009; 76 (1): 105-12.


Expression and functional characterization of NPA motif-null aquaporin-1 mutations., Jiang Y., IUBMB Life. June 1, 2009; 61 (6): 651-7.


Relative CO2/NH3 selectivities of AQP1, AQP4, AQP5, AmtB, and RhAG., Musa-Aziz R, Chen LM, Pelletier MF, Boron WF., Proc Natl Acad Sci U S A. March 31, 2009; 106 (13): 5406-11.


In vitro analysis and modification of aquaporin pore selectivity., Beitz E, Becker D, von Bülow J, Conrad C, Fricke N, Geadkaew A, Krenc D, Song J, Wree D, Wu B., Handb Exp Pharmacol. January 1, 2009; (190): 77-92.


Structural and functional divergence of two fish aquaporin-1 water channels following teleost-specific gene duplication., Tingaud-Sequeira A, Chauvigné F, Fabra M, Lozano J, Raldúa D, Cerdà J., BMC Evol Biol. September 23, 2008; 8 259.                


Functional characterization of a human aquaporin 0 mutation that leads to a congenital dominant lens cataract., Varadaraj K, Kumari SS, Patil R, Wax MB, Mathias RT., Exp Eye Res. July 1, 2008; 87 (1): 9-21.


Band 3 Courcouronnes (Ser667Phe): a trafficking mutant differentially rescued by wild-type band 3 and glycophorin A., Toye AM, Williamson RC, Khanfar M, Bader-Meunier B, Cynober T, Thibault M, Tchernia G, Déchaux M, Delaunay J, Bruce LJ., Blood. June 1, 2008; 111 (11): 5380-9.            


Mercury chloride decreases the water permeability of aquaporin-4-reconstituted proteoliposomes., Yukutake Y, Tsuji S, Hirano Y, Adachi T, Takahashi T, Fujihara K, Agre P, Yasui M, Suematsu M., Biol Cell. June 1, 2008; 100 (6): 355-63.


Test of blockers of AQP1 water permeability by a high-resolution method: no effects of tetraethylammonium ions or acetazolamide., Søgaard R, Zeuthen T., Pflugers Arch. May 1, 2008; 456 (2): 285-92.


Differential localization and regulation of two aquaporin-1 homologs in the intestinal epithelia of the marine teleost Sparus aurata., Raldúa D, Otero D, Fabra M, Cerdà J., Am J Physiol Regul Integr Comp Physiol. March 1, 2008; 294 (3): R993-1003.


Organization of the pronephric kidney revealed by large-scale gene expression mapping., Raciti D, Reggiani L, Geffers L, Jiang Q, Bacchion F, Subrizi AE, Clements D, Tindal C, Davidson DR, Kaissling B, Brändli AW., Genome Biol. January 1, 2008; 9 (5): R84.                                                                        


Zinc modulation of water permeability reveals that aquaporin 0 functions as a cooperative tetramer., Németh-Cahalan KL, Kalman K, Froger A, Hall JE., J Gen Physiol. November 1, 2007; 130 (5): 457-64.        


Aquaporin-1 channel function is positively regulated by protein kinase C., Zhang W, Zitron E, Hömme M, Kihm L, Morath C, Scherer D, Hegge S, Thomas D, Schmitt CP, Zeier M, Katus H, Karle C, Schwenger V., J Biol Chem. July 20, 2007; 282 (29): 20933-40.


Water transport by GLUT2 expressed in Xenopus laevis oocytes., Zeuthen T, Zeuthen E, Macaulay N., J Physiol. March 1, 2007; 579 (Pt 2): 345-61.


Isolation and functional characterization of three aquaporins from olive (Olea europaea L.)., Secchi F, Lovisolo C, Uehlein N, Kaldenhoff R, Schubert A., Planta. January 1, 2007; 225 (2): 381-92.


Excretion and conservation of glycerol, and expression of aquaporins and glyceroporins, during cold acclimation in Cope's gray tree frog Hyla chrysoscelis., Zimmerman SL, Frisbie J, Goldstein DL, West J, Rivera K, Krane CM., Am J Physiol Regul Integr Comp Physiol. January 1, 2007; 292 (1): R544-55.


Dominant-negative suppression of big brain ion channel activity by mutation of a conserved glutamate in the first transmembrane domain., Yool AJ., Gene Expr. January 1, 2007; 13 (6): 329-37.


The structure of aquaporins., Gonen T, Walz T., Q Rev Biophys. November 1, 2006; 39 (4): 361-96.


Evidence that aquaporin 1 is a major pathway for CO2 transport across the human erythrocyte membrane., Endeward V, Musa-Aziz R, Cooper GJ, Chen LM, Pelletier MF, Virkki LV, Supuran CT, King LS, Boron WF, Gros G., FASEB J. October 1, 2006; 20 (12): 1974-81.


Expression and function of aquaporins in human skin: Is aquaporin-3 just a glycerol transporter?, Boury-Jamot M, Sougrat R, Tailhardat M, Le Varlet B, Bonté F, Dumas M, Verbavatz JM., Biochim Biophys Acta. August 1, 2006; 1758 (8): 1034-42.


Acetazolamide inhibits osmotic water permeability by interaction with aquaporin-1., Gao J, Wang X, Chang Y, Zhang J, Song Q, Yu H, Li X., Anal Biochem. March 15, 2006; 350 (2): 165-70.


Point mutations in the aromatic/arginine region in aquaporin 1 allow passage of urea, glycerol, ammonia, and protons., Beitz E, Wu B, Holm LM, Schultz JE, Zeuthen T., Proc Natl Acad Sci U S A. January 10, 2006; 103 (2): 269-74.

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