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Wnt/p-catenin and Bmp signals control distinct sets of transcription factors in cardiac progenitor cells

机译:Wnt / p-catenin和Bmp信号控制心脏祖细胞中不同的转录因子集

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Progenitor cells of the first and second heart fields depend on cardiac-specific transcription factors for their differentiation. Using conditional mutagenesis of mouse embryos, we define the hierarchy of signaling events that controls the expression of cardiac-specific transcription factors during differentiation of cardiac progenitors at embryonic day 9.0. Wnt/p-catenin and Bmp act downstream of Notch/RBPJ at this developmental stage. Mutation of Axin2, the negative regulator of canonical Wnt signaling, enhances Wnt and Bmp4 signals and suffices to rescue the arrest of cardiac differentiation caused by loss of RBPJ. Using FACS enrichment of cardiac progenitors in RBPJ and RBPJ/Axin2 mutants, embryo cultures in the presence of the Bmp inhibitor Noggin, and by crossing a Bmp4 mutation into the RBPJ/Axin2 mutant background, we show that Wnt and Bmp4 signaling activate specific and nonover-lapping cardiac-specific genes in the cardiac progenitors: Nkx2-S, Isl1 and Baf60c are controlled by Wnt/p-catenin, and Gata4. SRF, and Mef2c are controlled by Bmp signaling. Our study contributes to the understanding of the regulatory hierarchies of cardiac progenitor differentiation and outflow tract development and has implications for understanding and modeling heart development.
机译:第一心脏场和第二心脏场的祖细胞依赖于心脏特异性转录因子进行分化。使用小鼠胚胎的条件诱变,我们定义了信号事件的层次,该事件在胚胎第9.0天分化心脏祖细胞期间控制心脏特异性转录因子的表达。 Wnt / p-catenin和Bmp在此发育阶段作用于Notch / RBPJ的下游。规范性Wnt信号的负调节剂Axin2的突变增强Wnt和Bmp4信号,足以挽救因RBPJ丢失而引起的心脏分化的停止。使用FACS富集RBPJ和RBPJ / Axin2突变体中的心脏祖细胞,在Bmp抑制剂Noggin存在的情况下进行胚胎培养,并通过将Bmp4突变跨入RBPJ / Axin2突变体背景,我们显示Wnt和Bmp4信号激活特异性和非特异性在心脏祖细胞中重叠心脏特异性基因:Nkx2-S,Isl1和Baf60c由Wnt / p-catenin和Gata4控制。 SRF和Mef2c由Bmp信令控制。我们的研究有助于了解心脏祖细胞分化和流出道发育的调控层次,并有助于理解和建模心脏发育。

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