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GWAS Study

Genetic Variants Associated with Circulating Parathyroid Hormone.

Robinson-Cohen C, Lutsey PL, Kleber ME et al.

27927781 PubMed ID
GWAS Study Type
29155 Participants
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Chapter I

Publication Details

Comprehensive information about this research publication

Authors

RC
Robinson-Cohen C
LP
Lutsey PL
KM
Kleber ME
NC
Nielson CM
MB
Mitchell BD
BJ
Bis JC
EK
Eny KM
PL
Portas L
EJ
Eriksson J
LM
Lorentzon M
KD
Koller DL
MY
Milaneschi Y
TA
Teumer A
PS
Pilz S
NM
Nethander M
SE
Selvin E
TW
Tang W
WL
Weng LC
WH
Wong HS
LD
Lai D
PM
Peacock M
HA
Hannemann A
VU
Völker U
HG
Homuth G
NM
Nauk M
MF
Murgia F
PJ
Pattee JW
OE
Orwoll E
ZJ
Zmuda JM
RJ
Riancho JA
WM
Wolf M
WF
Williams F
PB
Penninx B
EM
Econs MJ
RK
Ryan KA
OC
Ohlsson C
PA
Paterson AD
PB
Psaty BM
SD
Siscovick DS
RJ
Rotter JI
PM
Pirastu M
SE
Streeten E
MW
März W
FC
Fox C
CJ
Coresh J
WH
Wallaschofski H
PJ
Pankow JS
DB
de Boer IH
KB
Kestenbaum B
Chapter II

Abstract

Summary of the research findings

Parathyroid hormone (PTH) is a primary calcium regulatory hormone. Elevated serum PTH concentrations in primary and secondary hyperparathyroidism have been associated with bone disease, hypertension, and in some studies, cardiovascular mortality. Genetic causes of variation in circulating PTH concentrations are incompletely understood. We performed a genome-wide association study of serum PTH concentrations among 29,155 participants of European ancestry from 13 cohort studies (n=22,653 and n=6502 in discovery and replication analyses, respectively). We evaluated the association of single nucleotide polymorphisms (SNPs) with natural log-transformed PTH concentration adjusted for age, sex, season, study site, and principal components of ancestry. We discovered associations of SNPs from five independent regions with serum PTH concentration, including the strongest association with rs6127099 upstream of CYP24A1 (P=4.2 × 10-53), a gene that encodes the primary catabolic enzyme for 1,25-dihydroxyvitamin D and 25-dihydroxyvitamin D. Each additional copy of the minor allele at this SNP associated with 7% higher serum PTH concentration. The other SNPs associated with serum PTH concentration included rs4074995 within RGS14 (P=6.6 × 10-17), rs219779 adjacent to CLDN14 (P=3.5 × 10-16), rs4443100 near RTDR1 (P=8.7 × 10-9), and rs73186030 near CASR (P=4.8 × 10-8). Of these five SNPs, rs6127099, rs4074995, and rs219779 replicated. Thus, common genetic variants located near genes involved in vitamin D metabolism and calcium and renal phosphate transport associated with differences in circulating PTH concentrations. Future studies could identify the causal variants at these loci, and the clinical and functional relevance of these variants should be pursued.

up to 22,653 European ancestry individuals.

Chapter III

Study Statistics

Key metrics and study information

29155
Total Participants
GWAS
Study Type
Yes
Replicated
6,502 European ancestry individuals.
Replication Participants
European
Ancestry
U.S.
Recruitment Country
Chapter IV

Analysis

Comprehensive review of health and genetic findings

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