Agency
National Institute of Health (NIH)
Institute
National Institute of Diabetes and Digestive and Kidney Diseases (NIDDK)
Type
Research Project (R01)
Project #
5R01DK025231-16
Application #
2137678
Study Section
General Medicine B Study Section (GMB)
Project Start
1978-08-01
Project End
1996-11-30
Budget Start
1993-12-01
Budget End
1996-11-30
Support Year
16
Fiscal Year
1994
Total Cost
Indirect Cost
Name
University of Iowa
Department
Internal Medicine/Medicine
Type
Schools of Medicine
DUNS #
041294109
City
Iowa City
State
IA
Country
United States
Zip Code
52242
Thomas, C P; Auerbach, S D; Zhang, C et al. (1999) The structure of the rat amiloride-sensitive epithelial sodium channel gamma subunit gene and functional analysis of its promoter. Gene 228:111-22
Olakanmi, O; Stokes, J B; Pathan, S et al. (1997) Polyvalent cationic metals induce the rate of transferrin-independent iron acquisition by HL-60 cells. J Biol Chem 272:2599-606
Thomas, C P; Doggett, N A; Fisher, R et al. (1996) Genomic organization and the 5' flanking region of the gamma subunit of the human amiloride-sensitive epithelial sodium channel. J Biol Chem 271:26062-6
Matsushita, K; McCray Jr, P B; Sigmund, R D et al. (1996) Localization of epithelial sodium channel subunit mRNAs in adult rat lung by in situ hybridization. Am J Physiol 271:L332-9
Volk, K A; Zhang, C; Husted, R F et al. (1996) Cl- current in IMCD cells activated by hypotonicity: time course, ATP dependence, and inhibitors. Am J Physiol 271:F552-9
Husted, R F; Stokes, J B (1996) Separate regulation of Na+ and anion transport by IMCD: location, aldosterone, hypertonicity, TGF-beta 1, and cAMP. Am J Physiol 271:F433-9
Zhang, C; Husted, R F; Stokes, J B (1996) Effect of cAMP agonists on cell pH and anion transport by cultured rat inner medullary collecting duct cells. Am J Physiol 270:F131-40
Wiese, T J; Matsushita, K; Lowe Jr, W L et al. (1996) Localization and regulation of renal Na+/myo-inositol cotransporter in diabetic rats. Kidney Int 50:1202-11
Husted, R F; Takahashi, T; Stokes, J B (1996) IMCD cells cultured from Dahl S rats absorb more Na+ than Dahl R rats. Am J Physiol 271:F1029-36
Snyder, P M; Price, M P; McDonald, F J et al. (1995) Mechanism by which Liddle's syndrome mutations increase activity of a human epithelial Na+ channel. Cell 83:969-78

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