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Publication : A novel stem cell type at the basal side of the subventricular zone maintains adult neurogenesis.

First Author  Baur K Year  2022
Journal  EMBO Rep Volume  23
Issue  9 Pages  e54078
PubMed ID  35861333 Mgi Jnum  J:328913
Mgi Id  MGI:7341317 Doi  10.15252/embr.202154078
Citation  Baur K, et al. (2022) A novel stem cell type at the basal side of the subventricular zone maintains adult neurogenesis. EMBO Rep 23(9):e54078
abstractText  According to the current consensus, murine neural stem cells (NSCs) apically contacting the lateral ventricle generate differentiated progenitors by rare asymmetric divisions or by relocating to the basal side of the ventricular-subventricular zone (V-SVZ). Both processes will ultimately lead to the generation of adult-born olfactory bulb (OB) interneurons. In contrast to this view, we here find that adult-born OB interneurons largely derive from an additional NSC-type resident in the basal V-SVZ. Despite being both capable of self-renewal and long-term quiescence, apical and basal NSCs differ in Nestin expression, primary cilia extension and frequency of cell division. The expression of Notch-related genes also differs between the two NSC groups, and Notch activation is greatest in apical NSCs. Apical downregulation of Notch-effector Hes1 decreases Notch activation while increasing proliferation across the niche and neurogenesis from apical NSCs. Underscoring their different roles in neurogenesis, lactation-dependent increase in neurogenesis is paralleled by extra activation of basal but not apical NSCs. Thus, basal NSCs support OB neurogenesis, whereas apical NSCs impart Notch-mediated lateral inhibition across the V-SVZ.
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