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Summary Anatomy Item Literature (6354) Expression Attributions Wiki
XB-ANAT-254

Papers associated with oocyte (and aqp1)

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Combining different ion-selective channelrhodopsins to control water flux by light., Lin F., Pflugers Arch. December 1, 2023; 475 (12): 1375-1385.          


Inhibition of the Aquaporin-1 Cation Conductance by Selected Furan Compounds Reduces Red Blood Cell Sickling., Chow PH., Front Pharmacol. October 1, 2021; 12 794791.                    


The Xenopus Oocyte as an Expression System for Functional Analyses of Fish Aquaporins., Chauvigné F., Methods Mol Biol. January 1, 2021; 2218 11-28.


Aquaporin-7: A Dynamic Aquaglyceroporin With Greater Water and Glycerol Permeability Than Its Bacterial Homolog GlpF., Moss FJ., Front Physiol. January 1, 2020; 11 728.              


Stereoselective Anti-Cancer Activities of Ginsenoside Rg3 on Triple Negative Breast Cancer Cell Models., Nakhjavani M., Pharmaceuticals (Basel). August 1, 2019; 12 (3):             


Positively charged amino acid residues in the extracellular loops A and C of lens aquaporin 0 interact with the negative charges in the plasma membrane to facilitate cell-to-cell adhesion., Kumari S., Exp Eye Res. August 1, 2019; 185 107682.              


Identification of Loop D Domain Amino Acids in the Human Aquaporin-1 Channel Involved in Activation of the Ionic Conductance and Inhibition by AqB011., Kourghi M., Front Chem. April 27, 2018; 6 142.                


Lithobates catesbeianus (American Bullfrog) oocytes: a novel heterologous expression system for aquaporins., Kabutomori J., Biol Open. March 29, 2018; 7 (4):             


Divalent Cations Regulate the Ion Conductance Properties of Diverse Classes of Aquaporins., Kourghi M., Int J Mol Sci. November 3, 2017; 18 (11):               


The Extracellular C-loop Domain Plays an Important Role in the Cell Adhesion Function of Aquaporin 0., Nakazawa Y., Curr Eye Res. April 1, 2017; 42 (4): 617-624.


Heteromeric Slick/Slack K+ channels show graded sensitivity to cell volume changes., Tejada MA., PLoS One. February 21, 2017; 12 (2): e0169914.        


Differential Inhibition of Water and Ion Channel Activities of Mammalian Aquaporin-1 by Two Structurally Related Bacopaside Compounds Derived from the Medicinal Plant Bacopa monnieri., Pei JV., Mol Pharmacol. October 1, 2016; 90 (4): 496-507.


Identification of key residues involved in Si transport by the aquaglyceroporins., Carpentier GA., J Gen Physiol. September 1, 2016; 148 (3): 239-51.                    


Rapid Identification of Novel Inhibitors of the Human Aquaporin-1 Water Channel., Patil RV., Chem Biol Drug Des. May 1, 2016; 87 (5): 794-805.


Bumetanide Derivatives AqB007 and AqB011 Selectively Block the Aquaporin-1 Ion Channel Conductance and Slow Cancer Cell Migration., Kourghi M., Mol Pharmacol. January 1, 2016; 89 (1): 133-40.


Molecular and cellular characterization of urinary bladder-type aquaporin in Xenopus laevis., Shibata Y., Gen Comp Endocrinol. October 1, 2015; 222 11-9.                


Increased water flux induced by an aquaporin-1/carbonic anhydrase II interaction., Vilas G., Mol Biol Cell. March 15, 2015; 26 (6): 1106-18.                    


Vasotocin and isotocin regulate aquaporin 1 function in the sea bream., Martos-Sitcha JA., J Exp Biol. March 1, 2015; 218 (Pt 5): 684-93.


Cell volume changes regulate slick (Slo2.1), but not slack (Slo2.2) K+ channels., Tejada MA., PLoS One. January 1, 2014; 9 (10): e110833.        


Transmembrane water-flux through SLC4A11: a route defective in genetic corneal diseases., Vilas GL., Hum Mol Genet. November 15, 2013; 22 (22): 4579-90.                    


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


AqF026 is a pharmacologic agonist of the water channel aquaporin-1., Yool AJ., J Am Soc Nephrol. June 1, 2013; 24 (7): 1045-52.


Discovery of novel human aquaporin-1 blockers., Seeliger D., 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., Biophys J. January 8, 2013; 104 (1): 85-95.


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., 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., Eur Biophys J. June 1, 2011; 40 (6): 737-46.


Molecular and functional characterization of catfish (Heteropneustes fossilis) aquaporin-1b: changes in expression during ovarian development and hormone-induced follicular maturation., Chaube R., 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., PLoS One. January 1, 2011; 6 (7): e21901.          


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


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., 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.


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


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


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


Excretion and conservation of glycerol, and expression of aquaporins and glyceroporins, during cold acclimation in Cope's gray tree frog Hyla chrysoscelis., Zimmerman SL., 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.


NH3 and NH4+ permeability in aquaporin-expressing Xenopus oocytes., Holm LM., Pflugers Arch. September 1, 2005; 450 (6): 415-28.


Hypoosmotic cell swelling as a novel mechanism for modulation of cloned HCN2 channels., Calloe K., Biophys J. September 1, 2005; 89 (3): 2159-69.


The 5A structure of heterologously expressed plant aquaporin SoPIP2;1., Kukulski W., J Mol Biol. July 22, 2005; 350 (4): 611-6.


Isolation and characterization of the Xenopus oocyte plasma membrane: a new method for studying activity of water and solute transporters., Hill WG., Am J Physiol Renal Physiol. July 1, 2005; 289 (1): F217-24.


Conversion of aquaporin 6 from an anion channel to a water-selective channel by a single amino acid substitution., Liu K., Proc Natl Acad Sci U S A. February 8, 2005; 102 (6): 2192-7.


Aquaporin-1, nothing but a water channel., Tsunoda SP., J Biol Chem. March 19, 2004; 279 (12): 11364-7.


Effects of acetazolamide and anordiol on osmotic water permeability in AQP1-cRNA injected Xenopus oocyte., Ma B., Acta Pharmacol Sin. January 1, 2004; 25 (1): 90-7.


Single amino acids in the carboxyl terminal domain of aquaporin-1 contribute to cGMP-dependent ion channel activation., Boassa D., BMC Physiol. October 15, 2003; 3 12.              


Cloning and functional characterization of a novel aquaporin from Xenopus laevis oocytes., Virkki LV., J Biol Chem. October 25, 2002; 277 (43): 40610-6.                  


Analysis of double knockout mice lacking aquaporin-1 and urea transporter UT-B. Evidence for UT-B-facilitated water transport in erythrocytes., Yang B., J Biol Chem. September 27, 2002; 277 (39): 36782-6.


Positive and negative regulation of water channel aquaporins in human small intestine by cholera toxin., Hamabata T., Microb Pathog. June 1, 2002; 32 (6): 273-7.


Erythroid expression and oligomeric state of the AQP3 protein., Roudier N., J Biol Chem. March 8, 2002; 277 (10): 7664-9.


Tetraethylammonium block of water flux in Aquaporin-1 channels expressed in kidney thin limbs of Henle's loop and a kidney-derived cell line., Yool AJ., BMC Physiol. January 1, 2002; 2 4.        


Cloning and functional expression of an MIP (AQP0) homolog from killifish (Fundulus heteroclitus) lens., Virkki LV., Am J Physiol Regul Integr Comp Physiol. December 1, 2001; 281 (6): R1994-2003.

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