MesP1 drives vertebrate cardiovascular differentiation through Dkk-1-mediated blockade of Wnt-signalling

被引:175
作者
David, R. [1 ]
Brenner, C. [1 ]
Stieber, J. [2 ]
Schwarz, F. [1 ]
Brunner, S. [1 ]
Vollmer, M. [3 ]
Mentele, E. [4 ]
Mueller-Hoecker, J. [5 ]
Kitajima, S. [6 ]
Lickert, H.
Rupp, R. [4 ]
Franz, W. -M. [1 ]
机构
[1] Klinikum Grosshadern LMU, Med Klin & Poliklin 1, D-81377 Munich, Germany
[2] Univ Erlangen Nurnberg, Lehrstuhl Pharmakol & Toxikol, D-91054 Erlangen, Germany
[3] GSF, Natl Res Ctr Environm & Hlth, D-85764 Neuherberg, Germany
[4] Adolph Butenandt Inst LMU, D-80336 Munich, Germany
[5] Pathol Inst LMU, D-80337 Munich, Germany
[6] Natl Inst Hlth Sci, Div Cellular & Mol Toxicol, Biol Safety Res Ctr, Setagaya Ku, Tokyo 1588501, Japan
关键词
D O I
10.1038/ncb1696
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
ES-cell-based cardiovascular repair requires an in-depth understanding of the molecular mechanisms underlying the differentiation of cardiovascular ES cells. A candidate cardiovascular-fate inducer is the bHLH transcription factor MesP1(1,2). As one of the earliest markers, it is expressed specifically in almost all cardiovascular precursors and is required for cardiac morphogenesis(2,3). Here we show that MesP1 is a key factor sufficient to induce the formation of ectopic heart tissue in vertebrates and increase cardiovasculogenesis by ES cells. Electrophysiological analysis showed all subtypes of cardiac ES-cell differentiation(4). MesP1 overexpression and knockdown experiments revealed a prominent function of MesP1 in a gene regulatory cascade, causing Dkk-1-mediated blockade of canonical Wnt-signalling. Independent evidence from ChIP and in vitro DNA-binding studies, expression analysis in wild-type and MesP knockout mice, and reporter assays confirm that Dkk-1 is a direct target of MesP1. Further analysis of the regulatory networks involving MesP1 will be required to preprogramme ES cells towards a cardiovascular fate for cell therapy and cardiovascular tissue engineering. This may also provide a tool to elicit cardiac transdifferentiation in native human adult stem cells.
引用
收藏
页码:338 / U75
页数:21
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