Mitogen-activated Protein Kinase (MAPK)-regulated Interactions between Osterix and Runx2 Are Critical for the Transcriptional Osteogenic Program

被引:108
作者
Artigas, Natalia [1 ]
Urena, Carlos [1 ]
Rodriguez-Carballo, Edgardo [1 ]
Luis Rosa, Jose [1 ]
Ventura, Francesc [1 ]
机构
[1] Univ Barcelona, Inst Invest Biomed Bellvitge IDIBELL, Dept Ciencies Fisiol 2, E-08907 Lhospitalet De Llobregat, Spain
关键词
OSTEOBLAST-SPECIFIC EXPRESSION; CLEIDOCRANIAL DYSPLASIA; OSTEOCALCIN GENE; BONE-FORMATION; CELL-DIFFERENTIATION; SIGNALING PATHWAYS; PROXIMAL PROMOTER; FACTOR OSF2/CBFA1; P38; PHOSPHORYLATION;
D O I
10.1074/jbc.M114.576793
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The transcription factors Runx2 and Osx (Osterix) are required for osteoblast differentiation and bone formation. Runx2 expression occurs at early stages of osteochondroprogenitor determination, followed by Osx induction during osteoblast maturation. We demonstrate that coexpression of Osx and Runx2 leads to cooperative induction of expression of the osteogenic genes Col1a1, Fmod, and Ibsp. Functional interaction of Osx and Runx2 in the regulation of these promoters is mediated by enhancer regions with adjacent Sp1 and Runx2 DNA-binding sites. These enhancers allow formation of a cooperative transcriptional complex, mediated by the binding of Osx and Runx2 to their specific DNA promoter sequences and by the protein-protein interactions between them. We also identified the domains involved in the interaction between Osx and Runx2. These regions contain the amino acids in Osx and Runx2 known to be phosphorylated by p38 and ERK MAPKs. Inhibition of p38 and ERK kinase activities or mutation of their known phosphorylation sites in Osx or Runx2 strongly disrupts their physical interaction and cooperative transcriptional effects. Altogether, our results provide a molecular description of a mechanism for Osx and Runx2 transcriptional cooperation that is subject to further regulation by MAPK-activating signals during osteogenesis.
引用
收藏
页码:27105 / 27117
页数:13
相关论文
共 53 条
[41]   MOZ and MORF histone acetyltransferases interact with the Runt-domain transcription factor Runx2 [J].
Pelletier, N ;
Champagne, N ;
Stifani, S ;
Yang, XJ .
ONCOGENE, 2002, 21 (17) :2729-2740
[42]   Cooperative interactions between RUNX2 and homeodomain protein-binding sites are critical for the osteoblast-specific expression of the bone sialoprotein gene [J].
Roca, H ;
Phimphilai, M ;
Gopalakrishnan, R ;
Xiao, GZ ;
Franceschi, RT .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2005, 280 (35) :30845-30855
[43]   Ihh/Gli2 signaling promotes regulating Runx2 expression osteoblast differentiation by and function [J].
Shimoyama, Atsuko ;
Wada, Masahiro ;
Ikeda, Fumiyo ;
Hata, Kenji ;
Matsubara, Takuma ;
Nifuji, Akira ;
Noda, Masaki ;
Amano, Katsuhiko ;
Yamaguchi, Akira ;
Nishimura, Riko ;
Yoneda, Toshiyuki .
MOLECULAR BIOLOGY OF THE CELL, 2007, 18 (07) :2411-2418
[44]   Regulation of the bone-specific osteocalcin gene by p300 requires Runx2/Cbfa1 and the vitamin D3 receptor but not p300 intrinsic histone acetyltransferase activity [J].
Sierra, J ;
Villagra, A ;
Paredes, R ;
Cruzat, F ;
Gutierrez, S ;
Javed, A ;
Arriagada, G ;
Olate, J ;
Imschenetzky, M ;
van Wijnen, AJ ;
Lian, JB ;
Stein, GS ;
Stein, JL ;
Montecino, M .
MOLECULAR AND CELLULAR BIOLOGY, 2003, 23 (09) :3339-3351
[45]   Osterix and NO66 Histone Demethylase Control the Chromatin of Osterix Target Genes During Osteoblast Differentiation [J].
Sinha, Krishna M. ;
Yasuda, Hideyo ;
Zhou, Xin ;
deCrombrugghe, Benoit .
JOURNAL OF BONE AND MINERAL RESEARCH, 2014, 29 (04) :855-865
[46]   Two domains unique to osteoblast-specific transcription factor Osf2/Cbfa1 contribute to its transactivation function and its inability to heterodimerize with Cbfβ [J].
Thirunavukkarasu, K ;
Mahajan, M ;
McLarren, KW ;
Stifani, S ;
Karsenty, G .
MOLECULAR AND CELLULAR BIOLOGY, 1998, 18 (07) :4197-4208
[47]   Common variants in the region around Osterix are associated with bone mineral density and growth in childhood [J].
Timpson, Nicholas J. ;
Tobias, Jon H. ;
Richards, J. Brent ;
Soranzo, Nicole ;
Duncan, Emma L. ;
Sims, Anne-Marie ;
Whittaker, Pamela ;
Kumanduri, Vasudev ;
Zhai, Guangju ;
Glaser, Beate ;
Eisman, John ;
Jones, Graeme ;
Nicholson, Geoff ;
Prince, Richard ;
Seeman, Ego ;
Spector, Tim D. ;
Brown, Matthew A. ;
Peltonen, Leena ;
Smith, George Davey ;
Deloukas, Panos ;
Evans, David M. .
HUMAN MOLECULAR GENETICS, 2009, 18 (08) :1510-1517
[48]   BMP-2 induces osterix expression through up-regulation of Dlx5 and its phosphorylation by p38 [J].
Ulsamer, Arnau ;
Ortuño, M. Jose ;
Ruiz, Silvia ;
Susperregui, Antonio R. G. ;
Osses, Nelson ;
Rosa, Jose Luis ;
Ventura, Francesc .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2008, 283 (07) :3816-3826
[49]   MAPK pathways activate and phosphorylate the osteoblast-specific transcription factor, Cbfa1 [J].
Xiao, GZ ;
Jiang, D ;
Thomas, P ;
Benson, MD ;
Guan, KL ;
Karsenty, G ;
Franceschi, RT .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2000, 275 (06) :4453-4459
[50]   Fibroblast growth factor 2 induction of the osteocalcin gene requires MAPK activity and phosphorylation of the osteoblast transcription factor, Cbfa1/Runx2 [J].
Xiao, GZ ;
Jiang, D ;
Gopalakrishnan, R ;
Franceschi, RT .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2002, 277 (39) :36181-36187