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Essential role of Sox9 in the pathway that controls formation of cardiac valves and septa

机译:Sox9在控制心脏瓣膜和隔垫形成的途径中的重要作用

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Epithelial-mesenchymal transformation is a critical developmental process reiterated in multiple organs throughout embryogenesis. Formation of endocardial cushions, primordia of valves and septa, is a classic example of epithelial-mesenchymal transformation. Several gene mutations are known to affect cardiac valve formation. Sox9 is activated when endocardial endothelial cells undergo mesenchymal transformation and migrate into an extracellular matrix, called cardiac jelly, to form endocardial cushions. In Sox9-null mutants, endocardial cushions are markedly hypoplastic. In these mutants, Nfatc1 is ectopically expressed and no longer restricted to endothelial cells. Further, Sox9-deficient endocardial mesenchymal cells fail to express ErbB3, which is required for endocardial cushion cell differentiation and proliferation. Our results reveal a succession of molecular steps in the pathway of endocardial cushion development. We propose that loss of Sox9 inhibits epithelial-mesenchymal transformation after delamination and initial migration, but before definitive mesenchymal transformation.
机译:上皮-间充质转化是整个胚胎发生中多个器官中重申的关键发育过程。心内膜垫的形成,瓣膜的原基和隔垫是上皮-间质转化的典型例子。已知几种基因突变会影响心脏瓣膜的形成。当心内膜内皮细胞进行间充质转化并迁移到称为心胶的细胞外基质中以形成心内膜垫层时,Sox9被激活。在Sox9-null突变体中,心内膜垫明显发育不良。在这些突变体中,Nfatc1在异位表达,不再局限于内皮细胞。此外,缺乏Sox9的心内膜间充质细胞不能表达ErbB3,这是心内膜垫细胞分化和增殖所必需的。我们的结果揭示了心内膜垫发展途径中的一系列分子步骤。我们建议Sox9的损失抑制分层和初始迁移后,但在确定的间充质转化之前上皮-间质转化。

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