Direkt zum Inhalt
Merck
  • Nuclear isoform of FGF13 regulates post-natal neurogenesis in the hippocampus through an epigenomic mechanism.

Nuclear isoform of FGF13 regulates post-natal neurogenesis in the hippocampus through an epigenomic mechanism.

Cell reports (2021-05-20)
Qiao-Qiao Yang, Ying-Qi Zhai, Hai-Fang Wang, Yu-Chen Cai, Xin-Yue Ma, Yan-Qing Yin, Yan-Dong Li, Guo-Min Zhou, Xu Zhang, Gang Hu, Jia-Wei Zhou
ZUSAMMENFASSUNG

The hippocampus is one of two niches in the mammalian brain with persistent neurogenesis into adulthood. The neurogenic capacity of hippocampal neural stem cells (NSCs) declines with age, but the molecular mechanisms of this process remain unknown. In this study, we find that fibroblast growth factor 13 (FGF13) is essential for the post-natal neurogenesis in mouse hippocampus, and FGF13 deficiency impairs learning and memory. In particular, we find that FGF13A, the nuclear isoform of FGF13, is involved in the maintenance of NSCs and the suppression of neuronal differentiation during post-natal hippocampal development. Furthermore, we find that FGF13A interacts with ARID1B, a unit of Brahma-associated factor chromatin remodeling complex, and suppresses the expression of neuron differentiation-associated genes through chromatin modification. Our results suggest that FGF13A is an important regulator for maintaining the self-renewal and neurogenic capacity of NSCs in post-natal hippocampus, revealing an epigenomic regulatory function of FGFs in neurogenesis.

MATERIALIEN
Produktnummer
Marke
Produktbeschreibung

Sigma-Aldrich
Anti-NeuN-Antikörper, serum, from guinea pig
Sigma-Aldrich
Monoklonaler Anti-BrdU in Maus hergestellte Antikörper, clone BU-33, ascites fluid, Immunohistology Grade
Sigma-Aldrich
Anti-Tbr2-Antikörper, from chicken, purified by affinity chromatography