Inhibition of Myogenesis by Notch: Evidence for Multiple Pathways

被引:65
作者
Buas, Matthew F. [1 ]
Kabak, Shara [1 ]
Kadesch, Tom [1 ]
机构
[1] Univ Penn, Sch Med, Dept Genet, Philadelphia, PA 19104 USA
关键词
HELIX TRANSCRIPTION FACTOR; CELL-DIFFERENTIATION; PROGENITOR CELLS; MUSCLE; TARGET; ENHANCER; LIGAND; GENE; INTEGRATION; ACTIVATION;
D O I
10.1002/jcp.21571
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
Notch signaling is critical for skeletal muscle development and regeneration, permitting the expansion of progenitor cells by preventing premature differentiation. We have interrogated the pathways through which ligand-mediated signaling inhibits myogenesis by identifying Notch target genes and assessing their impact on differentiation in vitro. Notch activation led to the robust induction of the transcriptional repressors Hey1 and HeyL in myoblasts, but only constitutive expression of Hey1 blocked myogenesis. siRNA-mediated knockdown of Hey1 had no effect on Notch's ability to inhibit differentiation, suggesting the existence of additional, possibly redundant pathways. We identified 82 genes whose expression was activated when C2C12 myoblasts were cultured in the presence of the Notch ligand D114. One of these, MyoR, is a novel Notch-responsive gene, whose protein product is known to repress myogenesis in vitro. siRNA-mediated knockdown of MyoR alone, or in combination with Hey1, was also ineffective at rescuing differentiation in the presence of D114. Our data support a model in which Notch signaling inhibits myogenesis through multiple pathways, two of which are defined by the Notch target genes Hey1 and MyoR.
引用
收藏
页码:84 / 93
页数:10
相关论文
共 51 条
[1]   Notch signaling: Cell fate control and signal integration in development [J].
Artavanis-Tsakonas, S ;
Rand, MD ;
Lake, RJ .
SCIENCE, 1999, 284 (5415) :770-776
[2]  
Atherton GT, 1996, CELL GROWTH DIFFER, V7, P1059
[3]   HUMAN SATELLITE CELL-PROLIFERATION IN-VITRO IS REGULATED BY AUTOCRINE SECRETION OF IL-6 STIMULATED BY A SOLUBLE FACTOR(S) RELEASED BY ACTIVATED MONOCYTES [J].
CANTINI, M ;
MASSIMINO, ML ;
RAPIZZI, E ;
ROSSINI, K ;
CATANI, C ;
DALLALIBERA, L ;
CARRARO, U .
BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 1995, 216 (01) :49-53
[4]   SEPARABLE REGULATORY ELEMENTS GOVERNING MYOGENIN TRANSCRIPTION IN MOUSE EMBRYOGENESIS [J].
CHENG, TC ;
WALLACE, MC ;
MERLIE, JP ;
OLSON, EN .
SCIENCE, 1993, 261 (5118) :215-218
[5]   The regulation of notch signaling controls satellite cell activation and cell fate determination in postnatal myogenesis [J].
Conboy, IM ;
Rando, TA .
DEVELOPMENTAL CELL, 2002, 3 (03) :397-409
[6]   Notch-mediated restoration of regenerative potential to aged muscle [J].
Conboy, IM ;
Conboy, MJ ;
Smythe, GM ;
Rando, TA .
SCIENCE, 2003, 302 (5650) :1575-1577
[7]   TRB3:: A tribbles homolog that inhibits Akt/PKB activation by insulin in liver [J].
Du, KY ;
Herzig, S ;
Kulkarni, RN ;
Montminy, M .
SCIENCE, 2003, 300 (5625) :1574-1577
[8]   The Notch target genes Hey1 and Hey2 are required for embryonic vascular development [J].
Fischer, A ;
Schumacher, N ;
Maier, M ;
Sendtner, M ;
Gessler, M .
GENES & DEVELOPMENT, 2004, 18 (08) :901-911
[9]   Combined loss of Hey1 and HeyL causes congenital heart defects because of impaired epithelial to mesenchymal transition [J].
Fischer, Andreas ;
Steidl, Christian ;
Wagner, Toni U. ;
Lang, Esra ;
Jakob, Peter M. ;
Friedl, Peter ;
Knobeloch, Klaus-Peter ;
Gessler, Manfred .
CIRCULATION RESEARCH, 2007, 100 (06) :856-863
[10]   Hypoxia requires Notch signaling to maintain the undifferentiated cell state [J].
Gustafsson, MV ;
Zheng, XW ;
Pereira, T ;
Gradin, K ;
Jin, SB ;
Lundkvist, J ;
Ruas, JL ;
Poellinger, L ;
Lendahl, U ;
Bondesson, M .
DEVELOPMENTAL CELL, 2005, 9 (05) :617-628