Department of Molecular, Cellular & Craniofacial Biology, University of Louisville School of Dentistry, Louisville, KY 40202, USA.
Dev Biol. 2013 Sep 1;381(1):170-8. doi: 10.1016/j.ydbio.2013.05.029. Epub 2013 Jun 7.
During mouse gastrulation, cells in the primitive streak undergo epithelial-mesenchymal transformation and the resulting mesenchymal cells migrate out laterally to form mesoderm and definitive endoderm across the entire embryonic cylinder. The mechanisms underlying mesoderm and endoderm specification, migration, and allocation are poorly understood. In this study, we focused on the function of mouse Cripto, a member of the EGF-CFC gene family that is highly expressed in the primitive streak and migrating mesoderm cells on embryonic day 6.5. Conditional inactivation of Cripto during gastrulation leads to varied defects in mesoderm and endoderm development. Mutant embryos display accumulation of mesenchymal cells around the shortened primitive streak indicating a functional requirement of Cripto during the formation of mesoderm layer in gastrulation. In addition, some mutant embryos showed poor formation and abnormal allocation of definitive endoderm cells on embryonic day 7.5. Consistently, many mutant embryos that survived to embryonic day 8.5 displayed defects in ventral closure of the gut endoderm causing cardia bifida. Detailed analyses revealed that both the Fgf8-Fgfr1 pathway and p38 MAP kinase activation are partially affected by the loss of Cripto function. These results demonstrate a critical role for Cripto during mouse gastrulation, especially in mesoderm and endoderm formation and allocation.
在小鼠原肠胚形成过程中,原始条带中的细胞经历上皮-间质转化,产生的间质细胞侧向迁移,形成中胚层和整个胚胎圆柱体的 definitive endoderm。中胚层和 definitive endoderm 的特化、迁移和分配的机制尚不清楚。在这项研究中,我们专注于小鼠 Cripto 的功能,Cripto 是 EGF-CFC 基因家族的成员,在原肠胚形成期和胚胎第 6.5 天的迁移中胚层细胞中高度表达。Cripto 在原肠胚形成期的条件性失活导致中胚层和 definitive endoderm 发育的各种缺陷。突变胚胎显示出缩短的原始条带周围间质细胞的积累,表明 Cripto 在原肠胚形成中中胚层层形成过程中的功能需求。此外,一些突变胚胎显示出 definitive endoderm 细胞形成和分配的异常。一致地,存活到胚胎第 8.5 天的许多突变胚胎显示出肠内胚层腹侧闭合的缺陷,导致心球双裂。详细分析表明,Cripto 功能丧失部分影响 Fgf8-Fgfr1 途径和 p38 MAP 激酶的激活。这些结果表明 Cripto 在小鼠原肠胚形成过程中具有关键作用,特别是在中胚层和 definitive endoderm 的形成和分配中。