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REGULATION AND FUNCTION OF THE FGF23/KLOTHO ENDOCRINE PATHWAYS

Journal

PHYSIOLOGICAL REVIEWS
Volume 92, Issue 1, Pages 131-155

Publisher

AMER PHYSIOLOGICAL SOC
DOI: 10.1152/physrev.00002.2011

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Funding

  1. NATIONAL INSTITUTE OF ARTHRITIS AND MUSCULOSKELETAL AND SKIN DISEASES [R01AR045955] Funding Source: NIH RePORTER
  2. NIAMS NIH HHS [R01 AR045955-11, R01 AR045955] Funding Source: Medline

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Martin A, David V, Quarles LD. Regulation and Function of the FGF23/Klotho Endocrine Pathways. Physiol Rev 92: 131-155, 2012; doi: 10.1152/physrev.00002.2011.-Calcium (Ca2+) and phosphate (PO43-) homeostasis are coordinated by systemic and local factors that regulate intestinal absorption, influx and efflux from bone, and kidney excretion and reabsorption of these ions through a complex hormonal network. Traditionally, the parathyroid hormone (PTH)/vitamin D axis provided the conceptual framework to understand mineral metabolism. PTH secreted by the parathyroid gland in response to hypocalcemia functions to maintain serum Ca2+ levels by increasing Ca2+ reabsorption and 1,25-dihydroxyvitamin D [1,25(OH)(2)D] production by the kidney, enhancing Ca2+ and PO43- intestinal absorption and increasing Ca2+ and PO43- efflux from bone, while maintaining neutral phosphate balance through phosphaturic effects. FGF23 is a recently discovered hormone, predominately produced by osteoblasts/osteocytes, whose major functions are to inhibit renal tubular phosphate reabsorption and suppress circulating 1,25(OH)(2)D levels by decreasing Cyp27b1-mediated formation and stimulating Cyp24-mediated catabolism of 1,25(OH)(2)D. FGF23 participates in a new bone/kidney axis that protects the organism from excess vitamin D and coordinates renal PO43- handling with bone mineralization/turnover. Abnormalities of FGF23 production underlie many inherited and acquired disorders of phosphate homeostasis. This review discusses the known and emerging functions of FGF23, its regulation in response to systemic and local signals, as well as the implications of FGF23 in different pathological and physiological contexts.

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