Molecular Nutrition Study for Inorganic Phosphate Metabolism
Author:
Affiliation:
1. Department of Molecular Nutrition, Institution of Health Biosciences, The University of Tokushima Graduate School
Publisher
Japanese Society of Nutrition and Food Science
Subject
General Materials Science
Link
https://www.jstage.jst.go.jp/article/jsnfs/64/3/64_3_137/_pdf
Reference90 articles.
1. 2) Miyamoto K, Segawa H, Ito M, Kuwahata M (2004) Physiological regulation of renal sodium-dependent phosphate cotransporters. Jpn J Physiol 54: 93-102.
2. 3) Miyamoto K, Ito M, Tatsumi S, Kuwahata M, Segawa H (2007) New aspect of renal phosphate reabsorption: the type IIc sodium-dependent phosphate transporter. Am J Nephrol 27: 503-15.
3. 4) Segawa H, Aranami F, Kaneko I, Tomoe Y, Miyamoto K (2009) The roles of Na/Pi-II transporters in phosphate metabolism. Bone 45: S2-7.
4. 5) Miyamoto K, Tatsumi S, Sonoda T, Yamamoto H, Minami H, Taketani Y, Takeda E (1995) Cloning and functional expression of a Na+-dependent phosphate cotransporter from human kidney. Biochem J 305: 81-5.
5. 6) Bush AE, Schuster A, Waldegger S, Wagner CA, Zempel G, Broer S, Biber J, Murer H, Lang F (1996) Expression of a renal type I sodium/phosphate transporter (NaPi-1) induces a conductance in Xenopus oocytes permeable for organic and inorganic anions. Proc Natl Acad Sci USA 83: 5347-51.
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