Department of Chemical and Biological Engineering, Princeton University, Princeton, NJ, United States; Lewis Sigler Institute for Integrative Genomics, Princeton University, Princeton, NJ, United States.
Lewis Sigler Institute for Integrative Genomics, Princeton University, Princeton, NJ, United States; Department of Molecular Biology, Princeton University, Princeton, NJ, United States; Center for Computational Biology, Flatiron Institute, Simons Foundation, New York, NY, United States.
Curr Top Dev Biol. 2022;149:263-310. doi: 10.1016/bs.ctdb.2022.02.007. Epub 2022 Mar 4.
It has long been known that FGF signaling contributes to mesoderm formation, a germ layer found in triploblasts that is composed of highly migratory cells that give rise to muscles and to the skeletal structures of vertebrates. FGF signaling activates several pathways in the developing mesoderm, including transient activation of the Erk pathway, which triggers mesodermal fate specification through the induction of the gene brachyury and activates morphogenetic programs that allow mesodermal cells to position themselves in the embryo. In this review, we discuss what is known about the generation and interpretation of transient Erk signaling in mesodermal tissues across species. We focus specifically on mechanisms that translate the level and duration of Erk signaling into cell fate and cell movement instructions and discuss strategies for further interrogating the role that Erk signaling dynamics play in mesodermal gastrulation and morphogenesis.
长期以来,人们一直知道 FGF 信号通路有助于中胚层的形成。中胚层是在三胚层动物中发现的胚层,由高度迁移的细胞组成,这些细胞会产生肌肉和脊椎动物的骨骼结构。FGF 信号通路在发育中的中胚层中激活了几个途径,包括 Erk 途径的短暂激活,该途径通过诱导 brachyury 基因来触发中胚层命运的特化,并激活允许中胚层细胞在胚胎中定位自身的形态发生程序。在这篇综述中,我们讨论了已知的跨物种中胚层组织中瞬时 Erk 信号的产生和解释。我们特别关注将 Erk 信号的水平和持续时间转化为细胞命运和细胞运动指令的机制,并讨论了进一步研究 Erk 信号动力学在中胚层原肠胚形成和形态发生中的作用的策略。