Anteroposterior Wnt-RA Gradient Defines Adhesion and Migration Properties of Neural Progenitors in Developing Spinal Cord

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초록

Mammalian embryos exhibit a transition fromheadmorphogenesis to trunk elongation tomeet the demand of axial elongation. The caudal neural tube (NT) is formedwith neural progenitors (NPCs) derived fromneuromesodermal progenitors localized at the tail tip. However, the molecular and cellular basis of elongatingNTmorphogenesis is yet elusive. Here, we provide evidence that caudalNPCs exhibit strong adhesion affinity that is gradually decreased along the anteroposterior (AP) axis in mouse embryonic spinal cord and human cellular models. Strong cell-cell adhesion causes collective migration, allowing AP alignment of NPCs depending on their birthdate. We further validated that this axial adhesion gradient is associated with the extracellular matrix and is under the control of graded Wnt signaling emanating from tail buds and antagonistic retinoic acid (RA) signaling. These results suggest that progressive reduction of NPC adhesion along the AP axis is under the control of Wnt-RA molecular networks, which is essential for a proper elongation of the spinal cord.

키워드

adhesion and migration; axial elongation; extracellular matrix; neural stem cells; neuromesodermal progenitors; Wnt-RA network; NEUROMESODERMAL PROGENITORS; SECONDARY NEURULATION; WNT/BETA-CATENIN; STEM-CELLS; BODY AXIS; TUBE; IDENTIFICATION; MAINTENANCE; ELONGATION; XENOPUS
제목
Anteroposterior Wnt-RA Gradient Defines Adhesion and Migration Properties of Neural Progenitors in Developing Spinal Cord
저자
Shaker, Mohammed R.; Lee, Ju-Hyun; Park, Si-Hyung; Kim, Joo Yeon; Son, Gi Hoon; Son, Jong Wan; Park, Bae Ho; Rhyu, Im Joo; Kim, Hyun; Sun, Woong
DOI
10.1016/j.stemcr.2020.08.016
발행일
2020-10-13
유형
Article
저널명
Stem Cell Reports
권
15
호
4
페이지
898 ~ 911