Maintenance of Undifferentiated State and Self-Renewal of Embryonic Neural Stem Cells by Polycomb Protein Ring1B

Author:

Román-Trufero Mónica1,Méndez-Gómez Héctor R.23,Pérez Claudia4,Hijikata Atsushi5,Fujimura Yu-ichi5,Endo Takaho6,Koseki Haruhiko5,Vicario-Abejón Carlos23,Vidal Miguel1

Affiliation:

1. Cell and Developmental Biology, Centro de Investigaciones Biológicas, Instituto Cajal, Consejo Superior de Investigaciones Cientificas (CSIC), Madrid, Spain

2. Molecular, Cellular and Developmental Neurobiology, Instituto Cajal, Consejo Superior de Investigaciones Cientificas (CSIC), Madrid, Spain

3. Centro de Investigaciones Biomédicas en Red sobre Enfermedades Neurodegenerativas (CIBERNED), Instituto de Salud Carlos III, Madrid, Spain

4. Anatomy and Histopathology, Facultad de Veterinaria, Universidad de León, Campus Vegazana, León, Spain

5. Developmental Genetics, RIKEN Research Center for Allergy and Immunology, Yokohama, Japan

6. Bioinformatics and Systems Engineering Division, RIKEN Research Center for Allergy and Immunology, Yokohama, Japan

Abstract

Abstract Cell lineages generated during development and tissue maintenance are derived from self-renewing stem cells by differentiation of their committed progeny. Recent studies suggest that epigenetic mechanisms, and in particular the Polycomb group (PcG) of genes, play important roles in controlling stem cell self-renewal. Here, we address PcG regulation of stem cell self-renewal and differentiation through inactivation of Ring1B, a histone H2A E3 monoubiquitin ligase, in embryonic neural stem cells (NSCs) from the olfactory bulb of a conditional mouse mutant line. We show that neural stem/progenitor cell proliferation in vivo and in neurosphere assays is impaired, lacking Ring1B, and their self-renewal and multipotential abilities, assessed as sphere formation and differentiation from single cells, are severely affected. We also observed unscheduled neuronal, but not glial, differentiation of mutant stem/progenitor cells under proliferating conditions, an alteration enhanced in cells also lacking Ring1A, the Ring1B paralog, some of which turned into morphologically identifiable neurons. mRNA analysis of mutant cells showed upregulation of some neuronal differentiation–related transcription factors and the cell proliferation inhibitor Cdkn1a/p21, as well as downregulation of effectors of the Notch signaling pathway, a known inhibitor of neuronal differentiation of stem/progenitor cells. In addition, differentiation studies of Ring1B-deficient progenitors showed decreased oligodendrocyte formation in vitro and enhanced neurogenesis and reduced gliogenesis in vivo. These data suggest a role for Ring1B in maintenance of the undifferentiated state of embryonic neural stem/progenitor cells. They also suggest that Ring1B may modulate the differentiation potential of NSCs to neurons and glia. Disclosure of potential conflicts of interest is found at the end of this article.

Funder

Unknown funding agency

Onco-Cycle program from the Comunidad de Madrid

Instituto de Salud Carlos III

Publisher

Oxford University Press (OUP)

Subject

Cell Biology,Developmental Biology,Molecular Medicine

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