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Suppressor of fused controls perinatal expansion and quiescence of future dentate adult neural stem cells.


ABSTRACT: Adult hippocampal neurogenesis requires the quiescent neural stem cell (NSC) pool to persist lifelong. However, establishment and maintenance of quiescent NSC pools during development is not understood. Here, we show that Suppressor of Fused (Sufu) controls establishment of the quiescent NSC pool during mouse dentate gyrus (DG) development by regulating Sonic Hedgehog (Shh) signaling activity. Deletion of Sufu in NSCs early in DG development decreases Shh signaling activity leading to reduced proliferation of NSCs, resulting in a small quiescent NSC pool in adult mice. We found that putative adult NSCs proliferate and increase their numbers in the first postnatal week and subsequently enter a quiescent state towards the end of the first postnatal week. In the absence of Sufu, postnatal expansion of NSCs is compromised, and NSCs prematurely become quiescent. Thus, Sufu is required for Shh signaling activity ensuring expansion and proper transition of NSC pools to quiescent states during DG development.

SUBMITTER: Noguchi H 

PROVIDER: S-EPMC6459675 | biostudies-literature | 2019 Apr

REPOSITORIES: biostudies-literature

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Suppressor of fused controls perinatal expansion and quiescence of future dentate adult neural stem cells.

Noguchi Hirofumi H   Castillo Jesse Garcia JG   Nakashima Kinichi K   Pleasure Samuel J SJ  

eLife 20190411


Adult hippocampal neurogenesis requires the quiescent neural stem cell (NSC) pool to persist lifelong. However, establishment and maintenance of quiescent NSC pools during development is not understood. Here, we show that Suppressor of Fused (Sufu) controls establishment of the quiescent NSC pool during mouse dentate gyrus (DG) development by regulating Sonic Hedgehog (Shh) signaling activity. Deletion of <i>Sufu</i> in NSCs early in DG development decreases Shh signaling activity leading to red  ...[more]

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