Notch and bone morphogenetic protein differentially act on dermomyotome cells to generate endothelium, smooth, and striated muscle

被引:51
作者
Ben-Yair, Raz [1 ]
Kalcheim, Chaya [1 ]
机构
[1] Hebrew Univ Jerusalem, Hadassah Med Sch, Dept Anat & Cell Biol, IL-91120 Jerusalem, Israel
关键词
D O I
10.1083/jcb.200707206
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
We address the mechanisms underlying generation of skeletal muscle, smooth muscle, and endothelium from epithelial progenitors in the dermomyotome. Lineage analysis shows that of all epithelial domains, the lateral region is the most prolific producer of smooth muscle and endothelium. Importantly, individual labeled lateral somitic cells give rise to only endothelial or mural cells (not both), and endothelial and mural cell differentiation is driven by distinct signaling systems. Notch activity is necessary for smooth muscle production while inhibiting striated muscle differentiation, yet it does not affect initial development of endothelial cells. On the other hand, bone morphogenetic protein signaling is required for endothelial cell differentiation and/or migration but inhibits striated muscle differentiation and fails to impact smooth muscle cell production. Hence, although different mechanisms are responsible for smooth muscle and endothelium generation, the choice to become smooth versus striated muscle depends on a single signaling system. Altogether, these findings underscore the spatial and temporal complexity of lineage diversification in an apparently homogeneous epithelium.
引用
收藏
页码:607 / 618
页数:12
相关论文
共 62 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]   Lineage analysis of the avian dermomyotome sheet reveals the existence of single cells with both dermal and muscle progenitor fates [J].
Ben-Yair, R ;
Kalcheim, C .
DEVELOPMENT, 2005, 132 (04) :689-701
[3]   Coherent development of dermomyotome and dermis from the entire mediolateral extent of the dorsal somite [J].
Ben-Yair, R ;
Kahane, N ;
Kalcheim, C .
DEVELOPMENT, 2003, 130 (18) :4325-4336
[4]   Notch signalling: a simple pathway becomes complex [J].
Bray, Sarah J. .
NATURE REVIEWS MOLECULAR CELL BIOLOGY, 2006, 7 (09) :678-689
[5]   The orientation of cell division influences cell-fate choice in the developing mammalian retina [J].
Cayouette, M ;
Raff, M .
DEVELOPMENT, 2003, 130 (11) :2329-2339
[6]   PRIMARY NEUROGENESIS IN XENOPUS EMBRYOS REGULATED BY A HOMOLOG OF THE DROSOPHILA NEUROGENIC GENE-DELTA [J].
CHITNIS, A ;
HENRIQUE, D ;
LEWIS, J ;
ISHHOROWICZ, D ;
KINTNER, C .
NATURE, 1995, 375 (6534) :761-766
[7]  
Cinnamon Y, 1999, DEVELOPMENT, V126, P4305
[8]   Differential effects of N-cadherin-mediated adhesion on the development of myotomal waves [J].
Cinnamon, Y ;
Ben-Yair, R ;
Kalcheim, C .
DEVELOPMENT, 2006, 133 (06) :1101-1112
[9]   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
[10]   Jagged1-selective notch signaling induces smooth muscle differentiation via a RBP-Jκ-dependent pathway [J].
Doi, Hiroshi ;
Iso, Tatsuya ;
Sato, Hiroko ;
Yamazaki, Miki ;
Matsui, Hiroki ;
Tanaka, Toru ;
Manabe, Ichiro ;
Arai, Masashi ;
Nagai, Ryozo ;
Kurabayashi, Masahiko .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2006, 281 (39) :28555-28564