Uncoupling of growth plate maturation and bone formation in mice lacking both Schnurri-2 and Schnurri-3

被引:17
作者
Jones, Dallas C. [1 ,2 ]
Schweitzer, Michelle N. [1 ]
Wein, Marc [1 ]
Sigrist, Kirsten [1 ]
Takagi, Tsuyoshi [3 ]
Ishii, Shunsuke [3 ]
Glimcher, Laurie H. [1 ,2 ,4 ,5 ]
机构
[1] Harvard Univ, Sch Publ Hlth, Dept Immunol & Infect Dis, Boston, MA 02115 USA
[2] Harvard Univ, Sch Med, Dept Med, Boston, MA 02115 USA
[3] RIKEN Tsukuba Inst, Mol Genet Lab, Tsukuba, Ibaraki 3050074, Japan
[4] Massachusetts Gen Hosp, MIT, Ragon Inst, Boston, MA 02129 USA
[5] Harvard, Boston, MA 02129 USA
基金
美国国家卫生研究院;
关键词
chondrodysplasia; osteoblast; skeletogenesis; ENDOCHONDRAL OSSIFICATION; SKELETAL DEVELOPMENT; MURINE SCHNURRI-2; CARTILAGE; CELL; EXPRESSION; CHONDRODYSPLASIA; REGULATOR; INTERACTS; MOUSE;
D O I
10.1073/pnas.1003727107
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Formation and remodeling of the skeleton relies on precise temporal and spatial regulation of genes expressed in cartilage and bone cells. Debilitating diseases of the skeletal system occur when mutations arise that disrupt these intricate genetic regulatory programs. Here, we report that mice bearing parallel null mutations in the adapter proteins Schnurri2 (Shn2) and Schnurri3 (Shn3) exhibit defects in patterning of the axial skeleton during embryogenesis. Postnatally, these compound mutant mice develop a unique osteochondrodysplasia. The deletion of Shn2 and Shn3 impairs growth plate maturation during endochondral ossification but simultaneously results in massively elevated trabecular bone formation. Hence, growth plate maturation and bone formation can be uncoupled under certain circumstances. These unexpected findings demonstrate that both unique and redundant functions reside in the Schnurri protein family that are required for proper skeletal patterning and remodeling.
引用
收藏
页码:8254 / 8258
页数:5
相关论文
共 28 条
[1]   TYPE-II COLLAGEN DEFECT IN 2 SIBS WITH THE GOLDBLATT SYNDROME, A CHONDRODYSPLASIA WITH DENTINOGENESIS IMPERFECTA, AND JOINT LAXITY [J].
BONAVENTURE, J ;
STANESCU, R ;
STANESCU, V ;
ALLAIN, JC ;
MURIEL, MP ;
GINISTY, D ;
MAROTEAUX, P .
AMERICAN JOURNAL OF MEDICAL GENETICS, 1992, 44 (06) :738-753
[2]  
Caplan AI., 1987, BONE MINERAL RES, V5, P117
[3]   Inhibition of β-catenin signaling causes defects in postnatal cartilage development [J].
Chen, Mo ;
Zhu, Mei ;
Awad, Hani ;
Li, Tian-Fang ;
Sheu, Tzong-Jen ;
Boyce, Brendan F. ;
Chen, Di ;
O'Keefe, Regis J. .
JOURNAL OF CELL SCIENCE, 2008, 121 (09) :1455-1465
[4]  
Cohen MM, 2000, J CRAN GENET DEV BIO, V20, P84
[5]  
DUNLOP LLT, 1995, INT J DEV BIOL, V39, P357
[6]   TOWARD A MOLECULAR UNDERSTANDING OF SKELETAL DEVELOPMENT [J].
ERLEBACHER, A ;
FILVAROFF, EH ;
GITELMAN, SE ;
DERYNCK, R .
CELL, 1995, 80 (03) :371-378
[7]   A diastrophic dysplasia sulfate transporter (SLC26A2) mutant mouse:: morphological and biochemical characterization of the resulting chondrodysplasia phenotype [J].
Forlino, A ;
Piazza, R ;
Torre, SD ;
Tatangelo, L ;
Bonafè, L ;
Gualeni, B ;
Romano, A ;
Pecora, F ;
Superti-Furga, A ;
Cetta, G ;
Rossi, A .
HUMAN MOLECULAR GENETICS, 2005, 14 (06) :859-871
[8]   Schnurri-2 controls BMP-dependent adipogenesis via interaction with Smad proteins [J].
Jin, WZ ;
Takagi, T ;
Kanesashi, S ;
Kurahashi, T ;
Nomura, T ;
Harada, J ;
Ishii, S .
DEVELOPMENTAL CELL, 2006, 10 (04) :461-471
[9]   Regulation of adult bone mass by the zinc finger adapter protein Schnurri-3 [J].
Jones, Dallas C. ;
Wein, Marc N. ;
Oukka, Mohamed ;
Hofstaetter, Jochen G. ;
Glimcher, Melvin J. ;
Glimcher, Laurie H. .
SCIENCE, 2006, 312 (5777) :1223-1227
[10]   Reaching a genetic and molecular understanding of skeletal development [J].
Karsenty, G ;
Wagner, EF .
DEVELOPMENTAL CELL, 2002, 2 (04) :389-406