Cellular/molecular control of renal Na/Pi-cotransport

scientific article published on April 1998

Cellular/molecular control of renal Na/Pi-cotransport is …
instance of (P31):
review articleQ7318358
scholarly articleQ13442814

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P698PubMed publication ID9551425

P2093author name stringBiber J
Hilfiker H
Lötscher M
Murer H
Forster I
Kaissling B
Pfister M
P304page(s)S2-10
P577publication date1998-04-01
P1433published inKidney International. SupplementQ26842696
P1476titleCellular/molecular control of renal Na/Pi-cotransport
P478volume65

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cites work (P2860)
Q35087464Arterial calcification in diabetes
Q37244863Can features of phosphate toxicity appear in normophosphatemia?
Q33853723Effects of Npt2 gene ablation and low-phosphate diet on renal Na(+)/phosphate cotransport and cotransporter gene expression
Q42611601Functional characterization of a Na+-phosphate cotransporter (NaPi-II) from zebrafish and identification of related transcripts
Q38332329Hypophosphatemic rickets: lessons from disrupted FGF23 control of phosphorus homeostasis
Q33646628Modulation of phosphate uptake and amphotropic murine leukemia virus entry by posttranslational modifications of PIT-2
Q35059741Osteo-renal regulation of systemic phosphate metabolism
Q35059905Phosphate toxicity: new insights into an old problem
Q35920063Phosphate: known and potential roles during development and regeneration of teeth and supporting structures
Q36438697Properties of the mutant Ser-460-Cys implicate this site in a functionally important region of the type IIa Na(+)/P(i) cotransporter protein
Q37162336The Na+-Pi cotransporter PiT-2 (SLC20A2) is expressed in the apical membrane of rat renal proximal tubules and regulated by dietary Pi

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