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Hexhomeobox gene-dependent tissue positioning is required for organogenesis of the ventral pancreas

内胚层 中胚层 生物 FGF与中胚层形成 节的 原肠化 同源盒 器官发生 细胞生物学 胚芽层 前肠 侧板中胚层 组织发生 胚胎发生 内科学 解剖 胚胎 胚胎干细胞 遗传学 免疫学 转录因子 基因 医学 免疫组织化学 诱导多能干细胞
作者
Roque Bort,Juan Pedro Martı́nez-Barberá,Rosa Beddington,Kenneth S. Zaret
出处
期刊:Development [The Company of Biologists]
卷期号:131 (4): 797-806 被引量:259
标识
DOI:10.1242/dev.00965
摘要

In animal development, digestive tissues emerge from different positions of the endoderm as a result of patterning signals from overlying mesoderm. Although embryonic tissue movement during gastrulation generates an initial positional relationship between the endoderm and mesoderm, the role of subsequent endoderm movement against the mesoderm in patterning is unknown. At embryonic day 8.5 in the mouse, proliferation of cells at the leading edge of ventral-lateral endoderm, where the liver and ventral pancreas emerge, helps close off the foregut. During this time, the endoderm grows adjacent to and beyond the cardiogenic mesoderm, an inducer of the liver program and an inhibitor of the pancreas program. The homeobox gene Hex is expressed in this endoderm cell domain and in the liver and ventral pancreas buds, after organogenesis. We have found that in Hex-/- embryos, there is a complete failure in ventral pancreatic specification, while the liver program is still induced. However, when Hex-null ventral endoderm is isolated prior to its interaction with cardiogenic mesoderm and is cultured in vitro, it activates early pancreas genes. We found that Hex controls the proliferation rate, and thus the positioning, of the leading edge of endoderm cells that grow beyond the cardiogenic mesoderm, during gut tube closure. Thus, Hex-controlled positioning of endoderm cells beyond cardiogenic mesoderm dictates ventral pancreas specification. Other endodermal transcription factors may also function morphogenetically rather than by directly regulating tissue-specific programs.
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