Bondue Antoine, Lapouge Gaëlle, Paulissen Catherine, Semeraro Claudio, Iacovino Michelina, Kyba Michael, Blanpain Cédric
Université Libre de Bruxelles, IRIBHM, B-1070 Brussels, Belgium.
Cell Stem Cell. 2008 Jul 3;3(1):69-84. doi: 10.1016/j.stem.2008.06.009.
During embryonic development, multipotent cardiovascular progenitor cells are specified from early mesoderm. Using mouse ESCs in which gene expression can be temporally regulated, we have found that transient expression of Mesp1 dramatically accelerates and enhances multipotent cardiovascular progenitor specification through an intrinsic and cell autonomous mechanism. Genome-wide transcriptional analysis indicates that Mesp1 rapidly activates and represses a discrete set of genes, and chromatin immunoprecipitation shows that Mesp1 directly binds to regulatory DNA sequences located in the promoter of many key genes in the core cardiac transcriptional machinery, resulting in their rapid upregulation. Mesp1 also directly represses the expression of key genes regulating other early mesoderm and endoderm cell fates. Our results demonstrate that Mesp1 acts as a key regulatory switch during cardiovascular specification, residing at the top of the hierarchy of the gene network responsible for cardiovascular cell-fate determination.
在胚胎发育过程中,多能心血管祖细胞由早期中胚层分化而来。利用基因表达可在时间上受到调控的小鼠胚胎干细胞,我们发现Mesp1的瞬时表达通过一种内在的、细胞自主机制显著加速并增强了多能心血管祖细胞的分化。全基因组转录分析表明,Mesp1能快速激活和抑制一组特定的基因,染色质免疫沉淀显示,Mesp1直接结合位于心脏核心转录机制中许多关键基因启动子内的调控DNA序列,导致这些基因快速上调。Mesp1还直接抑制调控其他早期中胚层和内胚层细胞命运的关键基因的表达。我们的结果表明,Mesp1在心血管分化过程中充当关键调控开关,处于负责心血管细胞命运决定的基因网络层级的顶端。