(Taken directly from the application) Hypocitraturia is an important cause of kidney stones. Citrate is freely filtered in the glomerulus, and urinary citrate excretion is regulated principally by the rate of citrate reabsorption and metabolism in the proximal tubule. Reabsorption is mediated by an apical membrane 3Na+/citrate cotransporter encoded by the NaDC-1 gene, and metabolism is mediate by one of two pathways: a mitochondrial pathway that mediates citrate metabolism in the tricarboxylic acid cycle; and a cytoplasmic pathway in which ATP citrate lyase metabolizes citrate to acetyl CoA and oxaloacetate. The proposed studies will examine the molecular mechanisms responsible for regulation of citrate reabsorption and metabolism, focusing on NaDC-1. Studies in Aim 1 will address the molecular mechanisms of NaDC-1 regulation in rats with chronic metabolic acidosis, K+ deficiency, alkali feeding, and starvation. Studies in Aim 2 will further address the molecular mechanisms of NaDC-1 regulation in cultured proximal tubule cells exposed to acidic extracellular fluid. These studies will utilize cells expressing native NaDC-1, as well as cells expressing stably transfected tagged NaDC-1, and transiently transfected reporter constructs.
Aim 1 and 2 together will address the regulation of NaDC-1. Studies in Aim 3 will address the role of signaling pathways known to be activated by acidosis in the regulation of NaDC-1. These pathways include: 1) tyrosine kinase and MAP kinase pathways; 2) glucocorticoids; and 3) endothelin. Studies in Aim 4 will quantitate citrate metabolism in mitochondrial and cytoplasmic pathways of the renal proximal tubule using 13C NMR spectroscopy. Lastly, studies in Aim 5 will address whether hyperkalemia causes hypercitraturia and thus is responsible for the lack of predisposition to nephrolithiasis in hyperkalemic renal distal tubular acidosis. These studies will allow us to continue to pursue an understanding of the mechanisms of regulation of renal citrate handling in the proximal tubule.

Project Start
2000-12-01
Project End
2001-11-30
Budget Start
Budget End
Support Year
24
Fiscal Year
2001
Total Cost
Indirect Cost
City
Dallas
State
TX
Country
United States
Zip Code
75390
Xu, Li Hao Richie; Maalouf, Naim M (2017) Effect of acute hyperinsulinemia on magnesium homeostasis in humans. Diabetes Metab Res Rev 33:
Xu, Li Hao Richie; Adams-Huet, Beverley; Poindexter, John R et al. (2017) Temporal Changes in Kidney Stone Composition and in Risk Factors Predisposing to Stone Formation. J Urol 197:1465-1471
Sakhaee, Khashayar; Poindexter, John; Aguirre, Crystal (2016) The effects of bariatric surgery on bone and nephrolithiasis. Bone 84:1-8
Hu, Ming Chang; Shi, Mingjun; Cho, Han Jun et al. (2015) Klotho and phosphate are modulators of pathologic uremic cardiac remodeling. J Am Soc Nephrol 26:1290-302
Hajibeigi, Asghar; Dioum, Elhadji M; Guo, Jianfei et al. (2015) Identification of novel regulatory NFAT and TFII-I binding elements in the calbindin-D28k promoter in response to serum deprivation. Biochem Biophys Res Commun 465:414-420
Yoon, Vivienne; Adams-Huet, Beverley; Sakhaee, Khashayar et al. (2013) Hyperinsulinemia and urinary calcium excretion in calcium stone formers with idiopathic hypercalciuria. J Clin Endocrinol Metab 98:2589-94
Capolongo, Giovanna; Abul-Ezz, Sameh; Moe, Orson W et al. (2012) Subclinical celiac disease and crystal-induced kidney disease following kidney transplant. Am J Kidney Dis 60:662-7
Cameron, MaryAnn; Maalouf, Naim M; Poindexter, John et al. (2012) The diurnal variation in urine acidification differs between normal individuals and uric acid stone formers. Kidney Int 81:1123-30
Sakhaee, Khashayar; Capolongo, Giovanna; Maalouf, Naim M et al. (2012) Metabolic syndrome and the risk of calcium stones. Nephrol Dial Transplant 27:3201-9
Nguyen, Trang Q; Maalouf, Naim M; Sakhaee, Khashayar et al. (2011) Comparison of insulin action on glucose versus potassium uptake in humans. Clin J Am Soc Nephrol 6:1533-9

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