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Genetic Variants Associated with Circulating Fibroblast Growth Factor 23.

Citation
Robinson-Cohen, C., et al. “Genetic Variants Associated With Circulating Fibroblast Growth Factor 23.”. Journal Of The American Society Of Nephrology : Jasn, pp. 2583-2592.
Center UCSD-UCLA
Author Cassianne Robinson-Cohen, Traci M Bartz, Dongbing Lai, Alp Ikizler, Munro Peacock, Erik A Imel, Erin D Michos, Tatiana M Foroud, Kristina Akesson, Kent D Taylor, Linnea Malmgren, Kunihiro Matsushita, Maria Nethander, Joel Eriksson, Claes Ohlsson, Daniel Mellström, Myles Wolf, Osten Ljunggren, Fiona McGuigan, Jerome I Rotter, Magnus Karlsson, Michael J Econs, Joachim H Ix, Pamela L Lutsey, Bruce M Psaty, Ian H de Boer, Bryan R Kestenbaum
Keywords fibroblast growth factor 23, human genetics, mineral metabolism
Abstract

BACKGROUND: Fibroblast growth factor 23 (FGF23), a bone-derived hormone that regulates phosphorus and vitamin D metabolism, contributes to the pathogenesis of mineral and bone disorders in CKD and is an emerging cardiovascular risk factor. Central elements of FGF23 regulation remain incompletely understood; genetic variation may help explain interindividual differences.

METHODS: We performed a meta-analysis of genome-wide association studies of circulating FGF23 concentrations among 16,624 participants of European ancestry from seven cohort studies, excluding participants with eGFR<30 ml/min per 1.73 m to focus on FGF23 under normal conditions. We evaluated the association of single-nucleotide polymorphisms (SNPs) with natural log-transformed FGF23 concentration, adjusted for age, sex, study site, and principal components of ancestry. A second model additionally adjusted for BMI and eGFR.

RESULTS: We discovered 154 SNPs from five independent regions associated with FGF23 concentration. The SNP with the strongest association, rs17216707 (=3.0×10), lies upstream of , which encodes the primary catabolic enzyme for 1,25-dihydroxyvitamin D and 25-hydroxyvitamin D. Each additional copy of the T allele at this locus is associated with 5% higher FGF23 concentration. Another locus strongly associated with variations in FGF23 concentration is rs11741640, within and upstream of (a gene involved in renal phosphate transport). Additional adjustment for BMI and eGFR did not materially alter the magnitude of these associations. Another top locus (within , the ABO blood group transferase gene) was no longer statistically significant at the genome-wide level.

CONCLUSIONS: Common genetic variants located near genes involved in vitamin D metabolism and renal phosphate transport are associated with differences in circulating FGF23 concentrations.

Year of Publication
2018
Journal
Journal of the American Society of Nephrology : JASN
Volume
29
Issue
10
Number of Pages
2583-2592
Date Published
12/2018
ISSN Number
1533-3450
DOI
10.1681/ASN.2018020192
Alternate Journal
J. Am. Soc. Nephrol.
PMID
30217807
PMCID
PMC6171267
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