Microarray analysis of bone morphogenetic protein, transforming growth factor β, and activin early response genes during osteoblastic cell differentiation

被引:56
作者
De Jong, DS
Van Zoelen, EJJ
Bauerschmidt, S
Olijve, W
Steegenga, WT
机构
[1] Univ Nijmegen, Dept Appl Biol, NL-6525 ED Nijmegen, Netherlands
[2] Univ Nijmegen, Dept Cell Biol, Nijmegen, Netherlands
[3] NV Organon, Target Discovery Unit, Oss, Netherlands
关键词
bone morphogenetic protein 2; transforming growth factor beta 1; osteoblasts; gene expression microarray; differentiation;
D O I
10.1359/jbmr.2002.17.12.2119
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Bone morphogenetic protein (BMP) 2, a member of the transforming growth factor (TGF) beta family, is a potent regulator of osteoblast differentiation. In addition, both TGF-beta and activin A can either induce bone formation or inhibit bone formation depending on cell type and differentiation status. Although much is known about the receptors and intracellular second messengers involved in the action of TGF-beta family members, little is known about how selectivity in the biological response of individual family members is controlled. In this study, we have investigated selective gene induction by BMP-2, TGF-beta1 and activin A in relation to their ability to control differentiation of mouse mesenchymal precursor cells C2C12 into osteoblastic cells. TGF-beta1 can inhibit BMP-2-induced differentiation of these cells, whereas activin A was found to be without morphogenetic effect. Using a gene expression microarray approach covering 8636 sequences, we have identified a total of 57 established genes and expressed sequence tags (ESTs) that were either up-regulated or down-regulated 2 h after treatment with at least one of these three stimuli. With respect to the established genes, 15 new target genes for TGF-beta family members thus were identified. Furthermore, a set of transcripts was identified, which was oppositely regulated by TGF-beta1 and BMP-2. Based on the inverse biological effects of TGF-beta1 and BMP-2 on C2C12 cells, these genes are important candidates for controlling the process of growth factor-induced osteoblast differentiation.
引用
收藏
页码:2119 / 2129
页数:11
相关论文
共 58 条
[1]   EXPRESSION OF HUMAN BONE MORPHOGENETIC PROTEINS-2 OR PROTEINS-4 IN MURINE MESENCHYMAL PROGENITOR C3H10T1/2 CELLS INDUCES DIFFERENTIATION INTO DISTINCT MESENCHYMAL CELL LINEAGES [J].
AHRENS, M ;
ANKENBAUER, T ;
SCHRODER, D ;
HOLLNAGEL, A ;
MAYER, H ;
GROSS, G .
DNA AND CELL BIOLOGY, 1993, 12 (10) :871-880
[2]   TGF-β-induced repression of CBFA1 by Smad3 decreases cbfa1 and osteocalcin expression and inhibits osteoblast differentiation [J].
Alliston, T ;
Choy, L ;
Ducy, P ;
Karsenty, G ;
Derynck, R .
EMBO JOURNAL, 2001, 20 (09) :2254-2272
[3]   Smad6 as a transcriptional corepressor [J].
Bai, ST ;
Shi, XM ;
Yang, XL ;
Cao, X .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2000, 275 (12) :8267-8270
[4]   Transforming growth factor-beta 1 responsiveness of the rat osteocalcin gene is mediated by an activator protein-1 binding site [J].
Banerjee, C ;
Stein, JL ;
VanWijnen, AJ ;
Frenkel, B ;
Lian, JB ;
Stein, GS .
ENDOCRINOLOGY, 1996, 137 (05) :1991-2000
[5]   TGF-BETA ALTERS GROWTH AND DIFFERENTIATION-RELATED GENE-EXPRESSION IN PROLIFERATING OSTEOBLASTS IN-VITRO, PREVENTING DEVELOPMENT OF THE MATURE BONE PHENOTYPE [J].
BREEN, EC ;
IGNOTZ, RA ;
MCCABE, L ;
STEIN, JL ;
STEIN, GS ;
LIAN, JB .
JOURNAL OF CELLULAR PHYSIOLOGY, 1994, 160 (02) :323-335
[6]   Heparin binding epidermal growth factor-like growth factor is a transforming growth factor β-regulated gene in intestinal epithelial cells [J].
Bulus, N ;
Barnard, JA .
BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 1999, 264 (03) :808-812
[7]   JunB is involved in the inhibition of myogenic differentiation by bone morphogenetic protein-2 [J].
Chalaux, E ;
López-Rovira, T ;
Rosa, JL ;
Bartrons, R ;
Ventura, F .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1998, 273 (01) :537-543
[8]   Influence of osteogenic protein-1 (OP-1;BMP-7) and transforming growth factor-beta 1 on bone formation in vitro [J].
Cheifetz, S ;
Li, IWS ;
McCulloch, CAG ;
Sampath, K ;
Sodek, J .
CONNECTIVE TISSUE RESEARCH, 1996, 35 (1-4) :71-78
[9]   Analysis of epithelial-mesenchymal interactions in the initial morphogenesis of the mammalian tooth [J].
Dassule, HR ;
McMahon, AP .
DEVELOPMENTAL BIOLOGY, 1998, 202 (02) :215-227
[10]  
Ducy P, 2000, DEV DYNAM, V219, P461, DOI 10.1002/1097-0177(2000)9999:9999<::AID-DVDY1074>3.0.CO