Mesp1 A Key Regulator of Cardiovascular Lineage Commitment

被引:166
作者
Bondue, Antoine [1 ]
Blanpain, Cedric [1 ]
机构
[1] Univ Libre Bruxelles, Interdisciplinary Res Inst, B-1070 Brussels, Belgium
基金
欧洲研究理事会;
关键词
Mesp1; stem cells; cardiovascular progenitors; transcription; migration; EMBRYONIC STEM-CELLS; EPITHELIAL-MESENCHYMAL TRANSITION; HEART PRECURSOR CELLS; CIONA-INTESTINALIS; BETA-CATENIN; CARDIAC MESODERM; PROGENITOR CELLS; DEFINED FACTORS; AXIS FORMATION; SMOOTH-MUSCLE;
D O I
10.1161/CIRCRESAHA.110.227058
中图分类号
R5 [内科学];
学科分类号
100201 [内科学];
摘要
In mammals, the heart arises from the differentiation of 2 sources of multipotent cardiovascular progenitors (MCPs). Different studies indicated that an evolutionary conserved transcriptional regulatory network controls cardiovascular development from flies to humans. Whereas in Drosophila, Tinman acts as a master regulator of cardiac development, the identification of such a master regulator in mammals remained elusive for a long time. In this review, we discuss the recent findings suggesting that Mesp1 acts as a key regulator of cardiovascular progenitors in vertebrates. Lineage tracing in mice demonstrated that Mesp1 represents the earliest marker of cardiovascular progenitors, tracing almost all the cells of the heart including derivatives of the primary and second heart fields. The inactivation of Mesp1/2 indicated that Mesp genes are essential for early cardiac mesoderm formation and MCP migration. Several recent studies have demonstrated that Mesp1 massively promotes cardiovascular differentiation during embryonic development and pluripotent stem cell differentiation and indicated that Mesp1 resides at the top of the cellular and transcriptional hierarchy that orchestrates MCP specification. In primitive chordates, Mesp also controls early cardiac progenitor specification and migration, suggesting that Mesp arises during chordate evolution to regulate the earliest step of cardiovascular development. Defining how Mesp1 regulates the earliest step of MCP specification and controls their migration is essential to understand the root of cardiovascular development and how the deregulation of these processes can lead to congenital heart diseases. In addition, these findings will be very useful to boost the production of cardiovascular cells for cellular therapy, drug and toxicity screening. (Circ Res. 2010; 107: 1414-1427.)
引用
收藏
页码:1414 / 1427
页数:14
相关论文
共 93 条
[1]
Brachyury is a target gene of the Wnt/β-catenin signaling pathway [J].
Arnold, SJ ;
Stappert, J ;
Bauer, A ;
Kispert, A ;
Herrmann, BG ;
Kemler, R .
MECHANISMS OF DEVELOPMENT, 2000, 91 (1-2) :249-258
[2]
Mesenchymal Origin of Hepatic Stellate Cells, Submesothelial Cells, and Perivascular Mesenchymal Cells During Mouse Liver Development [J].
Asahina, Kinji ;
Tsai, Shirley Y. ;
Li, Peng ;
Ishii, Mamoru ;
Maxson, Robert E., Jr. ;
Sucov, Henry M. ;
Tsukamoto, Hidekau .
HEPATOLOGY, 2009, 49 (03) :998-1011
[3]
TINMAN AND BAGPIPE - 2 HOMEO BOX GENES THAT DETERMINE CELL FATES IN THE DORSAL MESODERM OF DROSOPHILA [J].
AZPIAZU, N ;
FRASCH, M .
GENES & DEVELOPMENT, 1993, 7 (7B) :1325-1340
[4]
FoxF is essential for FGF- induced migration of heart progenitor cells in the ascidian Ciona intestinalis [J].
Beh, Jeni ;
Shi, Weiyang ;
Levine, Mike ;
Davidson, Brad ;
Christiaen, Lionel .
DEVELOPMENT, 2007, 134 (18) :3297-3305
[5]
Neural tissue in ascidian embryos is induced by FGF9/16/20, acting via a combination of maternal GATA and Ets transcription factors [J].
Bertrand, V ;
Hudson, C ;
Caillol, D ;
Popovici, C ;
Lemaire, P .
CELL, 2003, 115 (05) :615-627
[6]
BODMER R, 1993, DEVELOPMENT, V118, P719
[7]
Mesp1 acts as a master regulator of multipotent cardiovascular progenitor specification [J].
Bondue, Antoine ;
Lapouge, Gaelle ;
Paulissen, Catherine ;
Semeraro, Claudio ;
Lacovino, Michelina ;
Kyba, Michael ;
Blanpain, Cedric .
CELL STEM CELL, 2008, 3 (01) :69-84
[8]
pangolin encodes a Lef-1 homologue that acts downstream of Armadillo to transduce the Wingless signal in Drosophila [J].
Brunner, E ;
Peter, O ;
Schweizer, L ;
Basler, K .
NATURE, 1997, 385 (6619) :829-833
[9]
Human ISL1 heart progenitors generate diverse multipotent cardiovascular cell lineages [J].
Bu, Lei ;
Jiang, Xin ;
Martin-Puig, Silvia ;
Caron, Leslie ;
Zhu, Shenjun ;
Shao, Ying ;
Roberts, Drucilla J. ;
Huang, Paul L. ;
Domian, Ibrahim J. ;
Chien, Kenneth R. .
NATURE, 2009, 460 (7251) :113-U130
[10]
Building the mammalian heart from two sources of myocardial cells [J].
Buckingham, M ;
Meilhac, S ;
Zaffran, S .
NATURE REVIEWS GENETICS, 2005, 6 (11) :826-835