Schnirman Ruby E, Kuo Samuel J, Kelly Ryan C, Yamaguchi Terry P
NCI-Frederick, NIH, Frederick, MD, United States.
NCI-Frederick, NIH, Frederick, MD, United States.
Curr Top Dev Biol. 2023;153:145-180. doi: 10.1016/bs.ctdb.2023.01.010. Epub 2023 Feb 25.
Understanding how the body plan is established during embryogenesis remains a fundamental biological question. The Wnt/β-catenin signaling pathway plays a crucial and highly conserved role in body plan formation, functioning to polarize the primary anterior-posterior (AP) or head-to-tail body axis in most metazoans. In this chapter, we focus on the roles that the mammalian Wnt/β-catenin pathway plays to prepare the pluripotent epiblast for gastrulation, and to elicit the emergence of multipotent axial progenitors from the caudal epiblast. Interactions between Wnt and retinoic acid (RA), another powerful family of developmental signaling molecules, in axial progenitors will also be discussed. Gastrulation movements and somitogenesis result in the anterior displacement of the RA source (the rostral somites and lateral plate mesoderm (LPM)), from the posterior Wnt source (the primitive streak (PS)), leading to the establishment of antiparallel gradients of RA and Wnt that control the self-renewal and successive differentiation of neck, trunk and tail progenitors.
了解胚胎发育过程中身体蓝图是如何建立的仍然是一个基本的生物学问题。Wnt/β-连环蛋白信号通路在身体蓝图形成过程中起着至关重要且高度保守的作用,在大多数后生动物中,其功能是使初级前后(AP)或头到尾的身体轴极化。在本章中,我们将重点关注哺乳动物Wnt/β-连环蛋白通路在为原肠胚形成准备多能外胚层以及促使尾侧外胚层产生多能轴向祖细胞方面所起的作用。还将讨论Wnt与视黄酸(RA)(另一个强大的发育信号分子家族)在轴向祖细胞中的相互作用。原肠胚形成运动和体节发生导致RA来源(头侧体节和侧板中胚层(LPM))从后部Wnt来源(原条(PS))向前移位,从而建立起RA和Wnt的反平行梯度,这些梯度控制着颈部、躯干和尾部祖细胞的自我更新和连续分化。