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The American Journal of Physiology|May 1, 1991
Cellular mechanisms in proximal tubular reabsorption of inorganic phosphateH Murer, A Werner, S Reshkin, et al.Pflugers Archiv : European Journal of Physiology|January 1, 1994
Low-Pi diet increases the abundance of an apical protein in rat proximal-tubular S3 segmentsM Levi, M Arar, B Kaissling, et al.Pediatric Nephrology (Berlin, Germany)|December 1, 1993
Effect of low-phosphate diet on sodium/phosphate cotransport mRNA and protein content and on oocyte expression of phosphate transportJ Biber, G Caderas, G Stange, et al.Biochimica Et Biophysica Acta|August 18, 1993
Expression of Na/Pi cotransport from opossum kidney cells in Xenopus laevis oocytesV Sorribas, D Markovich, A Werner, et al.Somatic Cell and Molecular Genetics|April 14, 2000
Chromosomal localization of two human genes involved in phosphate homeostasis: the type IIb sodium-phosphate cotransporter and stanniocalcin-2K E White, J Biber, H Murer, et al.Pflugers Archiv : European Journal of Physiology|August 1, 1993
Localization of NaPi-1, a Na/Pi cotransporter, in rabbit kidney proximal tubules. II. Localization by immunohistochemistryJ Biber, M Custer, A Werner, et al.The American Journal of Physiology|February 1, 1995
Epidermal growth factor inhibits Na-Pi cotransport and mRNA in OK cellsM Arar, M Baum, J Biber, et al.The Journal of Clinical Investigation|March 15, 1997
Role of microtubules in the rapid regulation of renal phosphate transport in response to acute alterations in dietary phosphate contentM Lötscher, B Kaissling, J Biber, et al.The Journal of Membrane Biology|May 25, 2002
Modulation of renal type IIa Na+/Pi cotransporter kinetics by the arginine modifier phenylglyoxalI C Forster, K Köhler, G Stange, et al.The Journal of General Physiology|October 26, 1999
Properties of the mutant Ser-460-Cys implicate this site in a functionally important region of the type IIa Na(+)/P(i) cotransporter proteinG Lambert, I C Forster, G Stange, et al.Pageof 36