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Ras/丝裂原活化蛋白激酶(MAPK)信号通路赋予胚胎癌细胞内胚层分化对基底膜的依赖性。

Ras/MAPK pathway confers basement membrane dependence upon endoderm differentiation of embryonic carcinoma cells.

作者信息

Smedberg Jennifer L, Smith Elizabeth R, Capo-Chichi Callinice D, Frolov Andrey, Yang Dong-Hua, Godwin Andrew K, Xu Xiang-Xi

机构信息

Ovarian Cancer and Tumor Cell Biology Programs, Department of Medical Oncology, Fox Chase Cancer Center, 7701 Burholme Avenue, Philadelphia, PA 19111, USA.

出版信息

J Biol Chem. 2002 Oct 25;277(43):40911-8. doi: 10.1074/jbc.M205178200. Epub 2002 Jul 26.

Abstract

The formation of extraembryonic endoderm is one of the earliest steps in the differentiation of pluripotent cells of the inner cell mass during the early stages of embryonic development. The primitive endoderm cells and the derived parietal and visceral endoderm cells gain the capacity to produce collagen IV and laminin. The deposition of these components results in the formation of basement membrane and epithelium of the endoderm, with polarized cells covering the inner surface of the blastocoels. We used retinoic acid-induced endoderm differentiation of stem cell-like F9 embryonic carcinoma cells to study the role of the Ras pathway and its regulation in the formation of the visceral endoderm. Upon endoderm differentiation of F9 cells induced by retinoic acid, c-Fos expression, the downstream target of the Ras pathway, is suppressed by uncoupling Elk-1 phosphorylation/activation to MAPK activity. However, attachment to matrix gel greatly enhances the activation of MAPK in endoderm cells but not in undifferentiated F9 cells. Enhanced MAPK activation as a result of contact with basement membrane is able to compensate for reduced Elk-1 phosphorylation and c-Fos expression. We conclude that endoderm differentiation renders the activation of the Ras pathway basement membrane dependent, contributing to the epithelial organization of the visceral endoderm.

摘要

胚外内胚层的形成是胚胎发育早期内细胞团多能细胞分化的最早步骤之一。原始内胚层细胞以及衍生的壁层和脏层内胚层细胞获得了产生IV型胶原蛋白和层粘连蛋白的能力。这些成分的沉积导致基底膜和内胚层上皮的形成,极化细胞覆盖囊胚腔的内表面。我们利用视黄酸诱导的干细胞样F9胚胎癌细胞向内胚层分化,来研究Ras信号通路及其调控在内脏内胚层形成中的作用。在视黄酸诱导F9细胞向内胚层分化时,Ras信号通路的下游靶点c-Fos表达通过将Elk-1磷酸化/激活与MAPK活性解偶联而受到抑制。然而,附着于基质胶可极大增强内胚层细胞中MAPK的激活,但对未分化的F9细胞无此作用。与基底膜接触导致的MAPK激活增强能够补偿Elk-1磷酸化和c-Fos表达的降低。我们得出结论,内胚层分化使Ras信号通路的激活依赖于基底膜,这有助于内脏内胚层的上皮组织形成。

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