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Identification of a novel locus on chromosome 2q13, which predisposes to clinical vertebral fractures independently of bone density.

Authors :
Alonso N
Estrada K
Albagha OME
Herrera L
Reppe S
Olstad OK
Gautvik KM
Ryan NM
Evans KL
Nielson CM
Hsu YH
Kiel DP
Markozannes G
Ntzani EE
Evangelou E
Feenstra B
Liu X
Melbye M
Masi L
Brandi ML
Riches P
Daroszewska A
Olmos JM
Valero C
Castillo J
Riancho JA
Husted LB
Langdahl BL
Brown MA
Duncan EL
Kaptoge S
Khaw KT
Usategui-Martín R
Del Pino-Montes J
González-Sarmiento R
Lewis JR
Prince RL
D'Amelio P
García-Giralt N
Nogués X
Mencej-Bedrac S
Marc J
Wolstein O
Eisman JA
Oei L
Medina-Gómez C
Schraut KE
Navarro P
Wilson JF
Davies G
Starr J
Deary I
Tanaka T
Ferrucci L
Gianfrancesco F
Gennari L
Lucas G
Elosua R
Uitterlinden AG
Rivadeneira F
Ralston SH
Source :
Annals of the rheumatic diseases [Ann Rheum Dis] 2018 Mar; Vol. 77 (3), pp. 378-385. Date of Electronic Publication: 2017 Nov 23.
Publication Year :
2018

Abstract

Objectives: To identify genetic determinants of susceptibility to clinical vertebral fractures, which is an important complication of osteoporosis.<br />Methods: Here we conduct a genome-wide association study in 1553 postmenopausal women with clinical vertebral fractures and 4340 controls, with a two-stage replication involving 1028 cases and 3762 controls. Potentially causal variants were identified using expression quantitative trait loci (eQTL) data from transiliac bone biopsies and bioinformatic studies.<br />Results: A locus tagged by rs10190845 was identified on chromosome 2q13, which was significantly associated with clinical vertebral fracture (P=1.04×10 <superscript>-9</superscript> ) with a large effect size (OR 1.74, 95% CI 1.06 to 2.6). Bioinformatic analysis of this locus identified several potentially functional SNPs that are associated with expression of the positional candidate genes TTL (tubulin tyrosine ligase) and SLC20A1 (solute carrier family 20 member 1). Three other suggestive loci were identified on chromosomes 1p31, 11q12 and 15q11. All these loci were novel and had not previously been associated with bone mineral density or clinical fractures.<br />Conclusion: We have identified a novel genetic variant that is associated with clinical vertebral fractures by mechanisms that are independent of BMD. Further studies are now in progress to validate this association and evaluate the underlying mechanism.<br />Competing Interests: Competing interests: None declared.<br /> (© Article author(s) (or their employer(s) unless otherwise stated in the text of the article) 2018. All rights reserved. No commercial use is permitted unless otherwise expressly granted.)

Details

Language :
English
ISSN :
1468-2060
Volume :
77
Issue :
3
Database :
MEDLINE
Journal :
Annals of the rheumatic diseases
Publication Type :
Academic Journal
Accession number :
29170203
Full Text :
https://doi.org/10.1136/annrheumdis-2017-212469