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非洲爪蟾中内胚层的自主决定:胰腺基因XlHbox 8表达的调控

Autonomous endodermal determination in Xenopus: regulation of expression of the pancreatic gene XlHbox 8.

作者信息

Gamer L W, Wright C V

机构信息

Department of Cell Biology, Vanderbilt University Medical School, Nashville, Tennessee 37232-2175, USA.

出版信息

Dev Biol. 1995 Sep;171(1):240-51. doi: 10.1006/dbio.1995.1275.

DOI:10.1006/dbio.1995.1275
PMID:7556900
Abstract

In neural plate stage Xenopus embryos, XlHbox 8 expression marks anterior endodermal cells fated to develop into pancreas/duodenum, and expression continues in adult pancreas in exocrine duct, acinar, and islet cells. Here, XlHbox 8 is used as a marker in experiments addressing the mechanisms of early endodermal patterning, particularly with respect to the role of specific polypeptide growth factors. When mesoderm-free vegetal explants (VEs) from early blastula stage embryos are cultured in isolation, XlHbox 8 expression develops autonomously in the dorsal region, strongly suggesting that endodermal region-specific determination occurs before MBT. Data from microinjection experiments using RNA encoding the activin and FGF dominant negative receptors and growth factor treatments of isolated VEs suggest that activin positively regulates XlHbox 8 expression, whereas bFGF is a potent negative regulator. Moreover, bFGF induces mesodermal marker expression in VEs. This suggests that the early endodermal determination state is plastic and that elevated levels of bFGF may convert vegetal (endodermal) cells into mesoderm. We propose a model for XlHbox 8 regulation in which an early signal from the Nieuwkoop center (whose eventual fate is endoderm) predisposes dorsovegetal cells for autonomous XlHbox 8 expression, in an area of high local activin (or activin-like) ligand concentration, and low relative concentrations of bFGF.

摘要

在非洲爪蟾胚胎的神经板阶段,XlHbox 8的表达标记了注定发育成胰腺/十二指肠的前端内胚层细胞,并且在成年胰腺的外分泌导管、腺泡和胰岛细胞中持续表达。在这里,XlHbox 8被用作实验中的一个标记物,以研究早期内胚层模式形成的机制,特别是关于特定多肽生长因子的作用。当将早期囊胚阶段胚胎的无中胚层植物外植体(VEs)单独培养时,XlHbox 8的表达在背侧区域自主发育,这强烈表明内胚层区域特异性决定在中胚层形成前体转换(MBT)之前就已发生。使用编码激活素和FGF显性负性受体的RNA进行显微注射实验以及对分离的VEs进行生长因子处理得到的数据表明,激活素正向调节XlHbox 8的表达,而碱性成纤维细胞生长因子(bFGF)是一种有效的负调节因子。此外,bFGF在VEs中诱导中胚层标记物的表达。这表明早期内胚层决定状态是可塑性的,并且bFGF水平的升高可能会将植物(内胚层)细胞转化为中胚层。我们提出了一个XlHbox 8调节模型,其中来自Nieuwkoop中心(其最终命运是内胚层)的早期信号使背侧植物细胞在局部激活素(或激活素样)配体浓度高且bFGF相对浓度低的区域自主表达XlHbox 8。

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