High bone mass in mice expressing a mutant LRP5 gene

被引:392
作者
Babij, P
Zhao, WG
Small, C
Kharode, Y
Yaworsky, PJ
Bouxsein, ML
Reddy, PS
Bodine, PVN
Robinson, JA
Bhat, B
Marzolf, J
Moran, RA
Bex, F
机构
[1] Wyeth Ayerst Res, Womens Hlth Res Inst, Collegeville, PA 19426 USA
[2] Wyeth Ayerst Res, Andover, MA USA
[3] Wyeth Ayerst Res, Genom, Cambridge, MA USA
[4] Wyeth Ayerst Res, Musculoskeletal Sci, Cambridge, MA USA
关键词
genetics; osteoblast; Wnt; apoptosis; strength;
D O I
10.1359/jbmr.2003.18.6.960
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
A unique mutation in LRP5 is associated with high bone mass in man. Transgenic mice expressing this LRP5 mutation have a similar phenotype with high bone mass and enhanced strength. These results underscore the importance of LRP5 in skeletal regulation and suggest targets for therapies for bone disease. A mutation (G171V) in the low-density lipoprotein receptor related protein 5 (LRP5) has been associated with high bone mass (HBM) in two independent human kindreds. To validate the role of the, mutation, several lines of transgenic mice were created expressing either the human LRP5 G171V substitution or the wildtype LRP5 gene in bone. Volumetric bone mineral density (vBMD) analysis by pQCT showed dramatic increases in both total vBMD (30-55%) and trabecular vBMD (103-250%) of the distal femoral metaphysis and increased cortical size of the femoral diaphysis in mutant G171V transgenics at 5, 9, 17, 26, and 52 weeks of age (p < 0.01 for all). In addition, high-resolution microcomputed tomography (microCT) analysis of the distal femorae and lumbar vertebrae revealed an increase (110-232%) in trabecular bone volume fraction caused by both increased trabecular number (41-74%) and increased trabecular thickness (34-46%; p < 0.01 for all) in the mutant G171V mice. The increased bone mass was associated with significant increases in vertebral compressive strength (80-140%) and the increased cortical size with significant increases in femoral bending strength (50-130%). There were no differences in osteoclast number at 17 weeks of age. However, compared with littermate controls, the mutant G171V transgenic mice showed an increase in actively mineralizing bone surface, enhanced alkaline phosphatase staining in osteoblasts, and a significant reduction in the number of TUNEL-positive osteoblasts and osteocytes. These results suggest that the increased bone mineral density in mutant G171V mice was caused by increased numbers of active osteoblasts, which could in part be because of their increased functional lifespan. While slight bone anabolic activity was observed from overexpression of the wildtype LRP5 gene, it is clear that the G171V mutation, rather than overexpression of the receptor itself, is primarily responsible for the dramatic HBM bone effects. Together, these findings establish the importance of this novel and unexpected role of a lipoprotein receptor in regulating bone mass and afford a new model to explore LRP5 and its recent association with Wnt signaling in bone biology.
引用
收藏
页码:960 / 974
页数:15
相关论文
共 46 条
[1]  
Adams JS, 1999, ENDOCRIN UPDAT, V3, P25
[2]   Novel mechanism of Wnt signalling inhibition mediated by Dickkopf-1 interaction with LRP6/Arrow [J].
Bafico, A ;
Liu, GZ ;
Yaniv, A ;
Gazit, A ;
Aaronson, SA .
NATURE CELL BIOLOGY, 2001, 3 (07) :683-686
[3]   Genetic variability in adult bone density among inbred strains of mice [J].
Beamer, WG ;
Donahue, LR ;
Rosen, CJ ;
Baylink, DJ .
BONE, 1996, 18 (05) :397-403
[4]   Evidence that conditionally immortalized human osteoblasts express an osteocalcin receptor [J].
Bodine, PVN ;
Komm, BS .
BONE, 1999, 25 (05) :535-543
[5]  
BOGDANOVIC Z, 1994, J BONE MINER RES, V9, P285
[6]   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
[7]   Molecular cloning and characterization of LR3, a novel LDL receptor family protein with mitogenic activity [J].
Dong, Y ;
Lathrop, W ;
Weaver, D ;
Qiu, QQ ;
Cini, J ;
Bertolini, D ;
Chen, D .
BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 1998, 251 (03) :784-790
[8]   Defects in TCIRG1 subunit of the vacuolar proton pump are responsible for a subset of human autosomal recessive osteopetrosis [J].
Frattini, A ;
Orchard, PJ ;
Sobacchi, C ;
Giliani, S ;
Abinun, M ;
Mattsson, JP ;
Keeling, DJ ;
Andersson, AK ;
Wallbrandt, P ;
Zecca, L ;
Notarangelo, LD ;
Vezzoni, P ;
Villa, A .
NATURE GENETICS, 2000, 25 (03) :343-346
[9]   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
[10]  
Gong YQ, 1996, AM J HUM GENET, V59, P146