Molecular basis of vertebrate endoderm development.

Aaron M Zorn, James M Wells
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引用次数: 158

Abstract

The embryonic endoderm gives rise to the epithelial lining of the digestive and respiratory systems and organs such as the thyroid, lungs, liver, gallbladder, and pancreas. Studies in Xenopus, zebrafish, and mice have revealed a conserved molecular pathway controlling vertebrate endoderm development. The TGFbeta/Nodal signaling pathway is at the top of this molecular hierarchy and controls the expression of a number of key transcription factors including Mix-like homeodomain proteins, Gata zinc finger factors, Sox HMG domain proteins, and Fox forkhead factors. Here we review the function of these molecules comparing and contrasting their roles in each model organism. Finally, we will describe how our understanding of the molecular pathway governing endoderm development in embryos is being used to differentiate embryonic stem cells in vitro along endodermal lineages, with the ultimate goal of making therapeutically useful tissue.

脊椎动物内胚层发育的分子基础。
胚胎内胚层发育为消化系统和呼吸系统以及甲状腺、肺、肝、胆囊和胰腺等器官的上皮组织。对爪蟾、斑马鱼和小鼠的研究揭示了一种控制脊椎动物内胚层发育的保守分子途径。TGFbeta/Nodal信号通路位于该分子结构的顶端,控制着许多关键转录因子的表达,包括Mix-like同源结构域蛋白、Gata锌指因子、Sox HMG结构域蛋白和Fox叉头因子。在这里,我们回顾了这些分子的功能,比较和对比了它们在每种模式生物中的作用。最后,我们将描述如何利用我们对控制胚胎内胚层发育的分子途径的理解,沿着内胚层谱系在体外分化胚胎干细胞,最终目标是制造用于治疗的组织。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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