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Summary Anatomy Item Literature (324) Expression Attributions Wiki
XB-ANAT-1599

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Cation and voltage dependence of rat kidney electrogenic Na(+)-HCO(-)(3) cotransporter, rkNBC, expressed in oocytes., Sciortino CM., Am J Physiol. October 1, 1999; 277 (4): F611-23.


Synergism between Pax-8 and lim-1 in embryonic kidney development., Carroll TJ., Dev Biol. October 1, 1999; 214 (1): 46-59.        


Isoprenylcysteine-O-carboxyl methyltransferase regulates aldosterone-sensitive Na(+) reabsorption., Stockand JD., J Biol Chem. September 17, 1999; 274 (38): 26912-6.


Protein kinase C-mediated regulation of the renal Na(+)/dicarboxylate cotransporter, NaDC-1., Pajor AM., Biochim Biophys Acta. August 20, 1999; 1420 (1-2): 223-30.


Identification of a membrane protein, LAT-2, that Co-expresses with 4F2 heavy chain, an L-type amino acid transport activity with broad specificity for small and large zwitterionic amino acids., Pineda M., J Biol Chem. July 9, 1999; 274 (28): 19738-44.


Localization of an organic anion transporter-GFP fusion construct (rROAT1-GFP) in intact proximal tubules., Sweet DH., Am J Physiol. June 1, 1999; 276 (6): F864-73.


Transport of ochratoxin A by renal multispecific organic anion transporter 1., Tsuda M., J Pharmacol Exp Ther. June 1, 1999; 289 (3): 1301-5.


Transport properties of nonsteroidal anti-inflammatory drugs by organic anion transporter 1 expressed in Xenopus laevis oocytes., Apiwattanakul N., Mol Pharmacol. May 1, 1999; 55 (5): 847-54.


Molecular and functional analysis of SDCT2, a novel rat sodium-dependent dicarboxylate transporter., Chen X., J Clin Invest. April 1, 1999; 103 (8): 1159-68.


Identification of renal podocytes in multiple species: higher vertebrates are vimentin positive/lower vertebrates are desmin positive., Yaoita E., Histochem Cell Biol. February 1, 1999; 111 (2): 107-15.


A nucleoside-sensitive organic cation transporter in opossum kidney cells., Chen R., Am J Physiol. February 1, 1999; 276 (2): F323-8.


Towards a molecular anatomy of the Xenopus pronephric kidney., Brändli AW., Int J Dev Biol. January 1, 1999; 43 (5): 381-95.                      


Molecular cloning and functional expression of a multispecific organic anion transporter from human kidney., Hosoyamada M., Am J Physiol. January 1, 1999; 276 (1): F122-8.


Immunolocalization of the electrogenic Na+-HCO-3 cotransporter in mammalian and amphibian kidney., Schmitt BM., Am J Physiol. January 1, 1999; 276 (1): F27-38.


Precocious expression of the Wilms' tumor gene xWT1 inhibits embryonic kidney development in Xenopus laevis., Wallingford JB., Dev Biol. October 1, 1998; 202 (1): 103-12.          


Dietary sulfate regulates the expression of the renal brush border Na/Si cotransporter NaSi-1., Markovich D., J Am Soc Nephrol. September 1, 1998; 9 (9): 1568-73.


The specification of the pronephric tubules and duct in Xenopus laevis., Brennan HC., Mech Dev. July 1, 1998; 75 (1-2): 127-37.


Delta-aminolevulinic acid transport by intestinal and renal peptide transporters and its physiological and clinical implications., Döring F., J Clin Invest. June 15, 1998; 101 (12): 2761-7.


Cloning and functional expression of rNBC, an electrogenic Na(+)-HCO3- cotransporter from rat kidney., Romero MF., Am J Physiol. February 1, 1998; 274 (2): F425-32.


Molecular cloning and functional expression of an LLC-PK1 cell taurine transporter that is adaptively regulated by taurine., Han X., Adv Exp Med Biol. January 1, 1998; 442 261-8.


Membrane transporters in drug disposition., Giacomini KM., J Pharmacokinet Biopharm. December 1, 1997; 25 (6): 731-41.


Relative contributions of Na+-dependent phosphate co-transporters to phosphate transport in mouse kidney: RNase H-mediated hybrid depletion analysis., Miyamoto K., Biochem J. November 1, 1997; 327 ( Pt 3) 735-9.


Expression cloning and characterization of a novel multispecific organic anion transporter., Sekine T., J Biol Chem. July 25, 1997; 272 (30): 18526-9.


Cloning and characterization of two human polyspecific organic cation transporters., Gorboulev V., DNA Cell Biol. July 1, 1997; 16 (7): 871-81.


The electrogenic Na/HCO3 cotransporter., Boron WF., Wien Klin Wochenschr. June 27, 1997; 109 (12-13): 445-56.


Cloning and functional characterization of a rat renal organic cation transporter isoform (rOCT1A)., Zhang L., J Biol Chem. June 27, 1997; 272 (26): 16548-54.


Molecular cloning and characterization of NKT, a gene product related to the organic cation transporter family that is almost exclusively expressed in the kidney., Lopez-Nieto CE., J Biol Chem. March 7, 1997; 272 (10): 6471-8.


The renal electrogenic Na+:HCO-3 cotransporter., Boron VF., J Exp Biol. January 1, 1997; 200 (Pt 2): 263-8.


Cellular localization and regulation of CHIF in kidney and colon., Capurro C., Am J Physiol. September 1, 1996; 271 (3 Pt 1): C753-62.


Immunologic distribution of an organic anion transport protein in rat liver and kidney., Bergwerk AJ., Am J Physiol. August 1, 1996; 271 (2 Pt 1): G231-8.


Obligatory amino acid exchange via systems bo,+-like and y+L-like. A tertiary active transport mechanism for renal reabsorption of cystine and dibasic amino acids., Chillarón J., J Biol Chem. July 26, 1996; 271 (30): 17761-70.


Sugar binding to Na+/glucose cotransporters is determined by the carboxyl-terminal half of the protein., Panayotova-Heiermann M., J Biol Chem. April 26, 1996; 271 (17): 10029-34.


Molecular cloning and functional expression of a sodium-dicarboxylate cotransporter from human kidney., Pajor AM., Am J Physiol. April 1, 1996; 270 (4 Pt 2): F642-8.


The renal cortical Na-HCO3 cotransporter: V. expression in Xenopus oocytes., Ruiz OS., Proc Soc Exp Biol Med. February 1, 1996; 211 (2): 199-204.


Expression of the renal Na+/dicarboxylate cotransporter, NaDC-1, in COS-7 cells., Pajor AM., Pflugers Arch. February 1, 1996; 431 (4): 645-51.


Coexpression and stimulation of parathyroid hormone receptor positively regulates slowly activating IsK channels expressed in Xenopus oocytes., Waldegger S., Kidney Int. January 1, 1996; 49 (1): 112-6.


Cloning and functional expression of rat CLC-5, a chloride channel related to kidney disease., Steinmeyer K., J Biol Chem. December 29, 1995; 270 (52): 31172-7.


Molecular characteristics of Na(+)-coupled glucose transporters in adult and embryonic rat kidney., You G., J Biol Chem. December 8, 1995; 270 (49): 29365-71.


Activation of protein kinase A acutely inhibits and phosphorylates Na/H exchanger NHE-3., Moe OW., J Clin Invest. November 1, 1995; 96 (5): 2187-94.


Development of the Xenopus pronephric system., Vize PD., Dev Biol. October 1, 1995; 171 (2): 531-40.              


Parathyroid hormone stimulates electrogenic sodium transport in A6 cells., Rodriguez-Commes J., Biochem Biophys Res Commun. August 15, 1995; 213 (2): 688-98.


Heavy metal mediated inhibition of rBAT-induced amino acid transport., Waldegger S., Kidney Int. June 1, 1995; 47 (6): 1677-81.


[Molecular structure of luminal diuretic receptors]., Gamba G., Rev Invest Clin. January 1, 1995; 47 (3): 231-49.


Expression of rat renal Na+HCO3-cotransporter in Xenopus laevis oocytes., Burckhardt BC., Pflugers Arch. December 1, 1994; 429 (2): 294-6.


Renal and small intestinal sodium-dependent symporters of phosphate and sulphate., Murer H., J Exp Biol. November 1, 1994; 196 167-81.


Molecular cloning, functional expression, tissue distribution, and in situ hybridization of the renal sodium phosphate (Na+/P(i)) transporter in the control and hypophosphatemic mouse., Collins JF., FASEB J. August 1, 1994; 8 (11): 862-8.


Is the broad range amino acid transporter which is induced by a renal microvillar cDNA clone the cystinuria gene?, Christenson HN., Nutr Rev. June 1, 1994; 52 (6): 210-2.


The high affinity Na+/glucose cotransporter. Re-evaluation of function and distribution of expression., Lee WS., J Biol Chem. April 22, 1994; 269 (16): 12032-9.


The human kidney low affinity Na+/glucose cotransporter SGLT2. Delineation of the major renal reabsorptive mechanism for D-glucose., Kanai Y., J Clin Invest. January 1, 1994; 93 (1): 397-404.


rBAT, related to L-cysteine transport, is localized to the microvilli of proximal straight tubules, and its expression is regulated in kidney by development., Furriols M., J Biol Chem. December 25, 1993; 268 (36): 27060-8.

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