Depletion of definitive gut endoderm inSox17-null mutant mice

内胚层 生物 前肠 原肠化 后肠 中胚层 细胞生物学 囊胚 组织发生 原始条纹 外胚层 胚芽层 胚胎发生 同源盒 胚胎 内科学 遗传学 解剖 胚胎干细胞 转录因子 中肠 免疫学 基因 诱导多能干细胞 幼虫 免疫组织化学 医学 植物
作者
Masami Kanai‐Azuma,Yoshiakira Kanai,Jacqueline M. Gad,Youichi Tajima,Choji Taya,Masamichi Kurohmaru,Yutaka Sanai,Hiromichi Yonekawa,Kazumori Yazaki,Patrick Tam,Yoshihiro Hayashi
出处
期刊:Development [The Company of Biologists]
卷期号:129 (10): 2367-2379 被引量:703
标识
DOI:10.1242/dev.129.10.2367
摘要

In the mouse, the definitive endoderm is derived from the epiblast during gastrulation, and, at the early organogenesis stage, forms the primitive gut tube, which gives rise to the digestive tract, liver, pancreas and associated visceral organs. The transcription factors, Sox17 (a Sry-related HMG box factor) and its upstream factors, Mixer (homeobox factor) and Casanova (a novel Sox factor), have been shown to function as endoderm determinants in Xenopus and zebrafish, respectively. However, whether the mammalian orthologues of these genes are also involved with endoderm formation is not known. We show that Sox17–/– mutant embryos are deficient of gut endoderm. The earliest recognisable defect is the reduced occupancy by the definitive endoderm in the posterior and lateral region of the prospective mid- and hindgut of the headfold-stage embryo. The prospective foregut develops properly until the late neural plate stage. Thereafter, elevated levels of apoptosis lead to a reduction in the population of the definitive endoderm in the foregut. In addition, the mid- and hindgut tissues fail to expand. These are accompanied by the replacement of the definitive endoderm in the lateral region of the entire length of the embryonic gut by cells that resemble the visceral endoderm. In the chimeras, although Sox17-null ES cells can contribute unrestrictedly to ectodermal and mesodermal tissues, few of them could colonise the foregut endoderm and they are completely excluded from the mid- and hindgut endoderm. Our findings indicate an important role of Sox17 in endoderm development in the mouse, highlighting the idea that the molecular mechanism for endoderm formation is likely to be conserved among vertebrates.
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