Homophilic interaction of cell adhesion molecule 3 coordinates retina neuroepithelial cell proliferation

Author:

Li Yanan123ORCID,Xu Baijie123ORCID,Jin Mengmeng123ORCID,Zhang Hui123ORCID,Ren Ningxin12ORCID,Hu Jinhui12ORCID,He Jie12ORCID

Affiliation:

1. State Key Laboratory of Neuroscience, Institute of Neuroscience, Center for Excellence in Brain Science and Intelligence Technology 1 , , Shanghai, China

2. Chinese Academy of Sciences 1 , , Shanghai, China

3. University of Chinese Academy of Sciences 2 , Beijing, China

Abstract

Correct cell number generation is central to tissue development. However, in vivo roles of coordinated proliferation of individual neural progenitors in regulating cell numbers of developing neural tissues and the underlying molecular mechanism remain mostly elusive. Here, we showed that wild-type (WT) donor retinal progenitor cells (RPCs) generated significantly expanded clones in host retinae with G1-lengthening by p15 (cdkn2a/b) overexpression (p15+) in zebrafish. Further analysis showed that cell adhesion molecule 3 (cadm3) was reduced in p15+ host retinae, and overexpression of either full-length or ectodomains of Cadm3 in p15+ host retinae markedly suppressed the clonal expansion of WT donor RPCs. Notably, WT donor RPCs in retinae with cadm3 disruption recapitulated expanded clones that were found in p15+ retinae. More strikingly, overexpression of Cadm3 without extracellular ig1 domain in RPCs resulted in expanded clones and increased retinal total cell number. Thus, homophilic interaction of Cadm3 provides an intercellular mechanism underlying coordinated cell proliferation to ensure cell number homeostasis of the developing neuroepithelia.

Funder

National Key Research and Development Program of China

Shanghai Municipal Science and Technology Major Project

Chinese Academy of Sciences

Ministry of Science and Technology of the People's Republic of China

National Natural Science Foundation of China

State Key Laboratory of Neuroscience

Publisher

Rockefeller University Press

Subject

Cell Biology

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1. Neural Stem Cell Competition;Neuroscience Bulletin;2023-10-17

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