Stepwise modulation of apical orientational cell adhesions for vertebrate neurulation

Author:

Zhang Lili1,Wei Xiangyun2ORCID

Affiliation:

1. Department of Psychology Dalian Medical University 9 South LvShun Road Dalian 116044 China

2. Departments of Ophthalmology, Developmental Biology, and Microbiology & Molecular Genetics University of Pittsburgh 3501 Fifth Avenue Pittsburgh PA 15213 USA

Abstract

ABSTRACTNeurulation transforms the neuroectoderm into the neural tube. This transformation relies on reorganising the configurational relationships between the orientations of intrinsic polarities of neighbouring cells. These orientational intercellular relationships are established, maintained, and modulated by orientational cell adhesions (OCAs). Here, using zebrafish (Danio rerio) neurulation as a major model, we propose a new perspective on how OCAs contribute to the parallel, antiparallel, and opposing intercellular relationships that underlie the neural plate–keel–rod–tube transformation, a stepwise process of cell aggregation followed by cord hollowing. We also discuss how OCAs in neurulation may be regulated by various adhesion molecules, including cadherins, Eph/Ephrins, Claudins, Occludins, Crumbs, Na+/K+‐ATPase, and integrins. By comparing neurulation among species, we reveal that antiparallel OCAs represent a conserved mechanism for the fusion of the neural tube. Throughout, we highlight some outstanding questions regarding OCAs in neurulation. Answers to these questions will help us understand better the mechanisms of tubulogenesis of many tissues.

Funder

Eye and Ear Foundation of Pittsburgh

Research to Prevent Blindness

Dalian Medical University

University of Pittsburgh

Publisher

Wiley

Subject

General Agricultural and Biological Sciences,General Biochemistry, Genetics and Molecular Biology

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