Long-term self-renewing stem cells in the adult mouse hippocampus identified by intravital imaging
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Sara Bottes Baptiste N Jaeger Gregor-Alexander Pilz David J Jörg John Darby Cole Merit Kruse Lachlan Harris Vladislav I Korobeynyk Izaskun Mallona Fritjof Helmchen Francois Guillemot Benjamin D Simons Sebastian JessbergerAbstract
Neural stem cells (NSCs) generate neurons throughout life in the mammalian hippocampus. However, the potential for long-term self-renewal of individual NSCs within the adult brain remains unclear. We used two-photon microscopy and followed NSCs that were genetically labeled through conditional recombination driven by the regulatory elements of the stem cell-expressed genes GLI family zinc finger 1 (Gli1) or achaete-scute homolog 1 (Ascl1). Through intravital imaging of NSCs and their progeny, we identify a population of Gli1-targeted NSCs showing long-term self-renewal in the adult hippocampus. In contrast, once activated, Ascl1-targeted NSCs undergo limited proliferative activity before they become exhausted. Using single-cell RNA sequencing, we show that Gli1- and Ascl1-targeted cells have highly similar yet distinct transcriptional profiles, supporting the existence of heterogeneous NSC populations with diverse behavioral properties. Thus, we here identify long-term self-renewing NSCs that contribute to the generation of new neurons in the adult hippocampus.
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Journal Nature Neuroscience
Volume 24
Issue number 2
Pages 225-233
Available online
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Publisher website (DOI) 10.1038/s41593-020-00759-4
Europe PubMed Central 33349709
Pubmed 33349709
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