Contribution of the LRP5 gene to normal variation in peak BMD in women

被引:70
作者
Koller, DL
Ichikawa, S
Johnson, ML
Lai, DB
Xuei, XL
Edenberg, HJ
Conneally, PM
Hui, SL
Johnston, CC
Peacock, M
Foroud, T
Econs, MJ
机构
[1] Indiana Univ, Sch Med, Dept Med & Mol Genet, Indianapolis, IN 46202 USA
[2] Indiana Univ, Sch Med, Dept Med, Indianapolis, IN USA
[3] Indiana Univ, Sch Med, Dept Biochem & Mol Biol, Indianapolis, IN USA
关键词
low-density lipoprotein receptor-related protein 5 gene; peak BMD; genetic association; single nucleotide polymorphisms;
D O I
10.1359/JBMR.041019
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
The role of the LRP5 gene in rare BMD-related traits has recently been shown. We tested whether variation in this gene might play a role in normal variation in peak BMD. Association between SNPs in LRP5 and hip and spine BMD was measured in 1301 premenopausal women. Only a small proportion of the BMD variation was attributable to LRP5 in our sample. Introduction: Mutations in the low-density lipoprotein receptor-related protein 5 (LRP5) gene have been implicated as the cause of multiple distinct BMD-related rare Mendelian phenotypes. We sought to examine whether the LRP5 gene contributes to the observed variation in peak BMD in the normal population. Materials and Methods: We genotyped 12 single nucleotide polymorphisms (SNPs) in LRP5 using allele-specific PCR and mass spectrometry methods. Linkage disequilibrium between the genotyped LRP5 SNPs was measured. We tested for association between these SNPs and both hip and spine BMD (adjusted for age and body weight) in 1301 healthy premenopausal women who took part in a sibling pair study aimed at identifying the genes underlying peak bone mass. Our study used both population-based (ANOVA) and family-based (quantitative transmission disequilibrium test) association methodology. Results and Conclusions: The linkage disequilibrium pattern and haplotype block structure within the LRP5 gene were consistent with that observed in other studies. Although significant evidence of association was found between LRP5 SNPs and both hip and spine BMD, only a small proportion of the total variation in these phenotypes was accounted for. The genotyped SNPs accounted for similar to0.8% of the variation in femoral neck BMD and 1.1% of the variation in spine BMD. Results from our sample suggest that natural variation in and around LRP5 is not a major contributor to the observed variability in peak BMD at either the femoral neck or lumbar spine in white women.
引用
收藏
页码:75 / 80
页数:6
相关论文
共 23 条
[1]   A general test of association for quantitative traits in nuclear families [J].
Abecasis, GR ;
Cardon, LR ;
Cookson, WOC .
AMERICAN JOURNAL OF HUMAN GENETICS, 2000, 66 (01) :279-292
[2]   GOLD - Graphical Overview of Linkage Disequilibrium [J].
Abecasis, GR ;
Cookson, WOC .
BIOINFORMATICS, 2000, 16 (02) :182-183
[3]   High bone density due to a mutation in LDL-receptor-related protein 5 [J].
Boyden, LM ;
Mao, JH ;
Belsky, J ;
Mitzner, L ;
Farhi, A ;
Mitnick, MA ;
Wu, DQ ;
Insogna, K ;
Lifton, RP .
NEW ENGLAND JOURNAL OF MEDICINE, 2002, 346 (20) :1513-1521
[4]   Sibling pair linkage and association studies between peak bone mineral density and the gene locus for the osteoclast-specific subunit (OC116) of the vacuolar proton pump on chromosome 11p12-13 [J].
Carn, G ;
Koller, DL ;
Peacock, M ;
Hui, SL ;
Evans, WE ;
Conneally, PM ;
Johnston, CC ;
Foroud, T ;
Econs, MJ .
JOURNAL OF CLINICAL ENDOCRINOLOGY & METABOLISM, 2002, 87 (08) :3819-3824
[5]   Polymorphisms in the low-density lipoprotein receptor-related protein 5 (LRP5) gene are associated with variation in vertebral bone mass, vertebral bone size, and stature in whites [J].
Ferrari, SL ;
Deutsch, S ;
Choudhury, U ;
Chevalley, T ;
Bonjour, JP ;
Dermitzakis, ET ;
Rizzoli, R ;
Antonarakis, SE .
AMERICAN JOURNAL OF HUMAN GENETICS, 2004, 74 (05) :866-875
[6]   LDL receptor-related protein 5 (LRP5) affects bone accrual and eye development [J].
Gong, YQ ;
Slee, RB ;
Fukai, N ;
Rawadi, G ;
Roman-Roman, S ;
Reginato, AM ;
Wang, HW ;
Cundy, T ;
Glorieux, FH ;
Lev, D ;
Zacharin, M ;
Oexle, K ;
Marcelino, J ;
Suwairi, W ;
Heeger, S ;
Sabatakos, G ;
Apte, S ;
Adkins, WN ;
Allgrove, J ;
Arslan-Kirchner, M ;
Batch, JA ;
Beighton, P ;
Black, GCM ;
Boles, RG ;
Boon, LM ;
Borrone, C ;
Brunner, HG ;
Carle, GF ;
Dallapiccola, B ;
De Paepe, A ;
Floege, B ;
Halfhide, ML ;
Hall, B ;
Hennekam, RC ;
Hirose, T ;
Jans, A ;
Jüppner, H ;
Kim, CA ;
Keppler-Noreuil, K ;
Kohlschuetter, A ;
LaCombe, D ;
Lambert, M ;
Lemyre, E ;
Letteboer, T ;
Peltonen, L ;
Ramesar, RS ;
Romanengo, M ;
Somer, H ;
Steichen-Gersdorf, E ;
Steinmann, B .
CELL, 2001, 107 (04) :513-523
[7]  
JOHNSON BD, 1997, CL ALLER IM, V11, P1
[8]   Cbfa1-independent decrease in osteoblast proliferation, osteopenia, and persistent embryonic eye vascularization in mice deficient in Lrp5, a Wnt coreceptor [J].
Kato, M ;
Patel, MS ;
Levasseur, R ;
Lobov, I ;
Chang, BHJ ;
Glass, DA ;
Hartmann, C ;
Li, L ;
Hwang, TH ;
Brayton, CF ;
Lang, RA ;
Karsenty, G ;
Chan, L .
JOURNAL OF CELL BIOLOGY, 2002, 157 (02) :303-314
[9]   Linkage of a QTL contributing to normal variation in bone mineral density to chromosome 11q12-13 [J].
Koller, DL ;
Rodriguez, LA ;
Christian, JC ;
Slemenda, CW ;
Econs, MJ ;
Hui, SL ;
Morin, P ;
Conneally, PM ;
Joslyn, G ;
Curran, ME ;
Peacock, M ;
Johnston, CC ;
Foroud, T .
JOURNAL OF BONE AND MINERAL RESEARCH, 1998, 13 (12) :1903-1908
[10]  
Lev D, 2003, ISRAEL MED ASSOC J, V5, P419