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ERK介导的信号通路在海胆胚胎间充质形成和分化中的作用。

Role of the ERK-mediated signaling pathway in mesenchyme formation and differentiation in the sea urchin embryo.

作者信息

Fernandez-Serra Montserrat, Consales Claudia, Livigni Alessandra, Arnone Maria I

机构信息

Stazione Zoologica A. Dohrn, 80121 Naples, Italy.

出版信息

Dev Biol. 2004 Apr 15;268(2):384-402. doi: 10.1016/j.ydbio.2003.12.029.

Abstract

Mesoderm and mesodermal structures in the sea urchin embryo are entirely generated by two embryologically distinct populations of mesenchyme cells: the primary (PMC) and the secondary (SMC) mesenchyme cells. We have identified the extracellular signal-regulated kinase (ERK) as a key component of the regulatory machinery that controls the formation of both these cell types. ERK is activated in a spatial-temporal manner, which coincides with the epithelial-mesenchyme transition (EMT) of the prospective PMCs and SMCs. Here, we show that ERK controls EMT of both primary and secondary mesenchyme cells. Loss and gain of function experiments demonstrate that ERK signaling is not required for the early specification of either PMCs or SMCs, but controls the maintenance and/or the enhancement of expression levels of regulatory genes which participate in the process of specification of these cell types. In addition, ERK-mediated signaling is essential for the transcription of terminal differentiation genes encoding proteins that define the final structures generated by PMCs and SMCs. Our findings suggest that ERK has a central pan-mesodermal role in coupling EMT and terminal differentiation of all mesenchymal cell types in the sea urchin embryo.

摘要

海胆胚胎中的中胚层和中胚层结构完全由两种胚胎学上不同的间充质细胞群体产生

初级间充质细胞(PMC)和次级间充质细胞(SMC)。我们已确定细胞外信号调节激酶(ERK)是控制这两种细胞类型形成的调节机制的关键组成部分。ERK以时空方式被激活,这与预期的PMC和SMC的上皮-间充质转化(EMT)相吻合。在此,我们表明ERK控制初级和次级间充质细胞的EMT。功能缺失和功能获得实验表明,ERK信号对于PMC或SMC的早期特化并非必需,但控制参与这些细胞类型特化过程的调节基因表达水平的维持和/或增强。此外,ERK介导的信号对于编码定义由PMC和SMC产生的最终结构的蛋白质的终末分化基因的转录至关重要。我们的研究结果表明,ERK在海胆胚胎中所有间充质细胞类型的EMT和终末分化的耦合中具有核心的全中胚层作用。

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