Abstract
Inorganic phosphate (Pi) is required for cellular function and skeletal mineralization. Serum Pi level is maintained within a narrow range through a complex interplay between intestinal absorption, exchange with intracellular and bone storage pools, and renal tubular reabsorption. Pi is abundant in the diet, and intestinal absorption of Pi is efficient and minimally regulated. The kidney is a major regulator of Pi homeostasis and can increase or decrease its Pi reabsorptive capacity to accommodate Pi need. The crucial regulated step in Pi homeostasis is the transport of Pi across the renal proximal tubule. Type II sodium-dependent phosphate (Na/Pi) cotransporter (NPT2) is the major molecule in the renal proximal tubule and is regulated by hormones and nonhormonal factors. Recent studies of inherited and acquired hypophosphatemia which exhibit similar biochemical and clinical features, have led to the identification of novel genes, phosphate regulating gene with homologies to endopeptidases on the X chromosome (PHEX) and fibroblast growth factor-23 (FGF-23), that play a role in the regulation of Pi homeostasis. The PHEX gene encodes an endopeptidase, predominantly expressed in bone and teeth but not in kidney. FGF-23 may be a substrate of this endopeptidase and inhibit renal Pi reabsorption. In a survey in the United States and in Japan, the amount of phosphorus from food is gradually increasing. It is thought that excess amounts of phosphorus intake for long periods are a strong factor in bone impairment and ageing. The restriction of phosphorus intake seems to be important under low calcium intake to keep QOL on high level. © 2004 - IOS Press and the authors. All rights reserved.
Author supplied keywords
- Japan
- United States
- X chromosome
- aging
- autosomal dominant disorder
- bone dysplasia
- bone mineralization
- calcium
- calcium intake
- cell function
- chronic kidney failure
- clinical feature
- complex formation
- conference paper
- diaphragm paralysis
- enzyme substrate
- fibroblast growth factor 23
- fibroblast growth factor receptor 1
- food
- gene control
- gene identification
- gene mutation
- genetic code
- health survey
- homeostasis
- hormonal regulation
- human
- hypophosphatemia
- hypophosphatemic rickets
- inheritance
- intestine absorption
- kidney proximal tubule
- kidney transplantation
- kidney tubule absorption
- muscle weakness
- nonhuman
- osteomalacia
- phosphate
- phosphate blood level
- phosphate deficiency
- phosphorus
- postoperative complication
- priority journal
- protein expression
- proteinase
- quality of life
- recurrent disease
- rickets
- sequence homology
- skeleton
- sodium phosphate cotransporter
- tooth
Cite
CITATION STYLE
E., T., Y., T., N., S., T., S., & H., Y. (2004). The regulation and function of phosphate in the human body. BioFactors, 21(1–4), 345–355. Retrieved from http://www.embase.com/search/results?subaction=viewrecord&from=export&id=L40921881
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