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EMBO J ; 39(21): e104472, 2020 11 02.
Article in English | MEDLINE | ID: mdl-32929771

ABSTRACT

In adult hippocampal neurogenesis, stem/progenitor cells generate dentate granule neurons that contribute to hippocampal plasticity. The establishment of a morphologically defined dendritic arbor is central to the functional integration of adult-born neurons. We investigated the role of canonical Wnt/ß-catenin signaling in dendritogenesis of adult-born neurons. We show that canonical Wnt signaling follows a biphasic pattern, with high activity in stem/progenitor cells, attenuation in immature neurons, and reactivation during maturation, and demonstrate that this activity pattern is required for proper dendrite development. Increasing ß-catenin signaling in maturing neurons of young adult mice transiently accelerated dendritic growth, but eventually produced dendritic defects and excessive spine numbers. In middle-aged mice, in which protracted dendrite and spine development were paralleled by lower canonical Wnt signaling activity, enhancement of ß-catenin signaling restored dendritic growth and spine formation to levels observed in young adult animals. Our data indicate that precise timing and strength of ß-catenin signaling are essential for the correct functional integration of adult-born neurons and suggest Wnt/ß-catenin signaling as a pathway to ameliorate deficits in adult neurogenesis during aging.


Subject(s)
Hippocampus/metabolism , Neurons/metabolism , Signal Transduction/physiology , beta Catenin/metabolism , Aging/metabolism , Animals , Axin Protein/genetics , Female , Hippocampus/growth & development , Male , Mice , Mice, Inbred C57BL , Neural Stem Cells/metabolism , Neurogenesis/physiology , Wnt Signaling Pathway , beta Catenin/genetics
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