A Mesenchymal-Like ZEB1+ Niche Harbors Dorsal Radial Glial Fibrillary Acidic Protein-Positive Stem Cells in the Spinal Cord

Author:

Sabourin Jean-Charles1,Ackema Karin B.2,Ohayon David1,Guichet Pierre-Olivier1,Perrin Florence E.1,Garces Alain1,Ripoll Chantal1,Charité Jeroen3,Simonneau Lionel4,Kettenmann H.5,Zine Azel1,Privat Alain1,Valmier Jean1,Pattyn Alexandre1,Hugnot Jean-Philippe1

Affiliation:

1. Institut National de la Santé et de la Recherche Médicale (INSERM) U583, Physiopathologie et Thérapie des déficits sensoriels et moteurs, Institut des Neurosciences de Montpellier, Hôpital St. ELOI, Montpellier, France

2. Growth & Development, Biozentrum, University of Basel, Basel, Switzerland

3. Department of Cell Biology, Erasmus Medical Center, Rotterdam, The Netherlands

4. Laboratoire interdisciplinaire de recherche en didactique et formation, University Montpellier, Montpellier, France

5. Max-Delbrück-Centrum für Molekulare Medizin (MDC), Berlin, Germany

Abstract

Abstract In humans and rodents the adult spinal cord harbors neural stem cells located around the central canal. Their identity, precise location, and specific signaling are still ill-defined and controversial. We report here on a detailed analysis of this niche. Using microdissection and glial fibrillary acidic protein (GFAP)-green fluorescent protein (GFP) transgenic mice, we demonstrate that neural stem cells are mostly dorsally located GFAP+ cells lying ependymally and subependymally that extend radial processes toward the pial surface. The niche also harbors doublecortin protein (Dcx)+ Nkx6.1+ neurons sending processes into the lumen. Cervical and lumbar spinal cord neural stem cells maintain expression of specific rostro-caudal Hox gene combinations and the niche shows high levels of signaling proteins (CD15, Jagged1, Hes1, differential screening-selected gene aberrative in neuroblastoma [DAN]). More surprisingly, the niche displays mesenchymal traits such as expression of epithelial-mesenchymal-transition zinc finger E-box-binding protein 1 (ZEB1) transcription factor and smooth muscle actin. We found ZEB1 to be essential for neural stem cell survival in vitro. Proliferation within the niche progressively ceases around 13 weeks when the spinal cord reaches its final size, suggesting an active role in postnatal development. In addition to hippocampus and subventricular zone niches, adult spinal cord constitutes a third central nervous system stem cell niche with specific signaling, cellular, and structural characteristics that could possibly be manipulated to alleviate spinal cord traumatic and degenerative diseases. Disclosure of potential conflicts of interest is found at the end of this article.

Funder

European Union FP6 “Rescue” STREP

“Association Française contre les Myopathies”

Princess Grace of Monaco Fundation

Publisher

Oxford University Press (OUP)

Subject

Cell Biology,Developmental Biology,Molecular Medicine

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