AFLUID June 45/6
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چکیده
Sweet, Douglas H., David S. Miller, and John B. Pritchard. Localization of an organic anion transporter-GFP fusion construct (rROAT1-GFP) in intact proximal tubules. Am. J. Physiol. 276 (Renal Physiol. 45): F864–F873, 1999.— The organic anion transporter, rROAT1, is a dicarboxylate/ organic anion exchanger, a function associated with the basolateral membrane in rat proximal tubule. To directly establish the subcellular localization of rROAT1 in renal epithelia, we made a rROAT1-green fluorescent protein (GFP) fusion construct (rROAT1-GFP). Plasma membrane-associated fluorescence was observed in rROAT1-GFP-expressing Xenopus oocytes examined by confocal microscopy. Uptake of 3H-labeled p-aminohippurate (PAH) increased 2.5-fold in rROAT1-GFP-expressing Xenopus oocytes, and this increase was abolished by 1 mM probenecid. Thus the construct was capable of specific organic anion transport. Cultured renal epithelial cell lines (MDCK and LLC-PK1) transfected with the vector pEGFP-C3 showed a diffuse, evenly distributed cytoplasmic signal. However, when transfected with pEGFPC3/rROAT1 (vector coding for rROAT1-GFP), both cell lines showed predominantly plasma membrane fluorescence. The expression and distribution of rROAT1-GFP in intact renal proximal tubules was also investigated. Isolated killifish (Fundulus heteroclitus) renal tubules transfected with pEGFPC3/rROAT1 showed marked basal and lateral membraneassociated fluorescence, but no detectable signal in the nucleus or the apical pole of tubule cells. Tubules transfected with pEGFP-C3 showed diffuse cytoplasmic fluorescence. Function of the rROAT1-GFP construct was demonstrated in transfected killifish tubules by fluorescein transport assay. These results demonstrate the basolateral subcellular localization of rROAT1 in polarized renal epithelia and validate a new technique for localizing cloned transporters within intact renal tubules.
منابع مشابه
AFLUID June 45/6
ROSLYN M. LONDON,2 SAMMY L. EBER,1,2 SANDHYA S. VISWESWARIAH,4 WILLIAM J. KRAUSE,3 AND LEONARD R. FORTE1,2 1Harry S. Truman Memorial Veterans Hospital and Departments of 2Pharmacology, and 3Pathology and Anatomical Sciences, School of Medicine, Missouri University, Columbia, Missouri 65212; and 4Department of Molecular Reproduction, Development and Genetics, Indian Institute of Science, Bangalo...
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Chang, Hangil, and Toshiro Fujita. A numerical model of the renal distal tubule. Am. J. Physiol. 276 (Renal Physiol. 45): F931–F951, 1999.—A numerical model of the rat distal tubule was developed to simulate water and solute transport in this nephron segment. This model incorporates the following: 1) Na-Cl cotransporter, K-Cl cotransporter, Na channel, K channel, and Cl channel in the luminal m...
متن کاملAFLUID June 45/6
Wu, Feng, Frank Park, Allen W. Cowley, Jr., and David L. Mattson. Quantification of nitric oxide synthase activity in microdissected segments of the rat kidney. Am. J. Physiol. 276 (Renal Physiol. 45): F874–F881, 1999.—This study was designed to quantify nitric oxide synthase (NOS) activity in microdissected glomeruli (Glm), pars convoluta, pars recta, cortical collecting duct, cortical thick a...
متن کاملAFLUID June 45/6
Feldenberg, L. Richard, Sundararajah Thevananther, Marcela Del Rio, Maryely De Leon, and Prasad Devarajan. Partial ATP depletion induces Fasand caspasemediated apoptosis in MDCK cells. Am. J. Physiol. 276 (Renal Physiol. 45): F837–F846, 1999.—Brief periods of in vitro hypoxia/ischemia induce apoptosis of cultured renal epithelial cells, but the underlying mechanisms remain unknown. We show that...
متن کاملAFLUID June 45/6
Silver, Randi B., and Manoocher Soleimani. H1-K1-ATPases: regulation and role in pathophysiological states. Am. J. Physiol. 276 (Renal Physiol. 45): F799–F811, 1999.—Molecular cloning experiments have identified the existence of two H1-K1-ATPases (HKAs), colonic and gastric. Recent functional and molecular studies indicate the presence of both transporters in the kidney, which are presumed to m...
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