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Induction of cardiomyocytes by GATA4 in Xenopus ectodermal explants.

机译:GATA4在非洲爪蟾外胚层外植体中诱导心肌细胞。

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The earliest step in heart formation in vertebrates occurs during gastrulation, when cardiac tissue is specified. Dorsoanterior endoderm is thought to provide a signal that induces adjacent mesodermal cells to adopt a cardiac fate. However, the nature of this signalling and the precise role of endoderm are unknown because of the close proximity and interdependence of mesoderm and endoderm during gastrulation. To better define the molecular events that underlie cardiac induction, we have sought to develop a simple means of inducing cardiac tissue. We show that the transcription factor GATA4, which has been implicated in regulating cardiac gene expression, is sufficient to induce cardiac differentiation in Xenopus embryonic ectoderm (animal pole) explants, frequently resulting in beating tissue. Lineage labelling experiments demonstrate that GATA4 can trigger cardiac differentiation not only in cells in which it is present, but also in neighbouring cells. Surprisingly, cardiac differentiation can occur without any stable differentiation of anterior endoderm and is in fact enhanced under conditions in which endoderm formation is inhibited. Remarkably, cardiac tissue is formed even when GATA4 activity is delayed until long after explants have commenced differentiation into epidermal tissue. These findings provide a simple assay system for cardiac induction that may allow elucidation of pathways leading to cardiac differentiation. Better knowledge of the pathways governing this process may help develop procedures for efficient generation of cardiomyocytes from pluripotent stem cells.
机译:当指定心脏组织时,在脊椎动物的心脏形成的最早步骤发生在胃造瘘期间。人们认为背前内胚层提供了一种信号,该信号诱导邻近的中胚层细胞采取心脏命运。然而,由于中胚层中胚层和内胚层的紧密接近和相互依赖性,因此该信号传导的性质和内胚层的确切作用尚不清楚。为了更好地定义构成心脏诱导基础的分子事件,我们寻求开发一种诱导心脏组织的简单方法。我们表明转录因子GATA4,已参与调节心脏基因表达,足以诱导非洲爪蟾胚胎外胚层(动物极)外植体中的心脏分化,经常导致组织跳动。沿袭标记实验表明,GATA4不仅可以在存在它的细胞中而且可以在邻近细胞中触发心脏分化。出人意料的是,在没有内胚层的任何稳定分化的情况下可以发生心脏分化,并且实际上在抑制内胚层形成的条件下心脏分化得到增强。值得注意的是,即使GATA4活性被延迟到外植体开始分化为表皮组织后很长时间,心脏组织仍会形成。这些发现为心脏诱导提供了一种简单的测定系统,该系统可以阐明导致心脏分化的途径。更好地了解控制该过程的途径可能有助于开发从多能干细胞有效生成心肌细胞的程序。

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