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Updated: Feb 12, 2026

Isolation and Culture of Hippocampal Neurons from Prenatal Mice
Published on: July 26, 2012
Impaired neuronal maturation of hippocampal neural progenitor cells in mice lacking CRAF
Verena Pfeiffer1,2, Rudolf Götz2,3, Guadelupe Camarero2
1University of Würzburg, Institute of Anatomy and Cell Biology, Koellikerstraße 6, Würzburg, Germany.
Abstract:
RAF kinases are major constituents of the mitogen activated signaling pathway, regulating cell proliferation, differentiation and cell survival of many cell types, including neurons. In mammals, the family of RAF proteins consists of three members, ARAF, BRAF, and CRAF. Ablation of CRAF kinase in inbred mouse strains causes major developmental defects during fetal growth and embryonic or perinatal lethality. Heterozygous germline mutations in CRAF result in Noonan syndrome, which is characterized by neurocognitive impairment that may involve hippocampal physiology. The role of CRAF signaling during hippocampal development and generation of new postnatal hippocampal granule neurons has not been examined and may provide novel insight into the cause of hippocampal dysfunction in Noonan syndrome. In this study, by crossing CRAF-deficiency to CD-1 outbred mice, a CRAF mouse model was established which enabled us to investigate the interplay of neural progenitor proliferation and postmitotic differentiation during adult neurogenesis in the hippocampus. Albeit the general morphology of the hippocampus was unchanged, CRAF-deficient mice displayed smaller granule cell layer (GCL) volume at postnatal day 30 (P30). In CRAF-deficient mice a substantial number of abnormal, chromophilic, fast dividing cells were found in the subgranular zone (SGZ) and hilus of the dentate gyrus (DG), indicating that CRAF signaling contributes to hippocampal neural progenitor proliferation. CRAF-deficient neural progenitor cells showed an increased cell death rate and reduced neuronal maturation. These results indicate that CRAF function affects postmitotic neural cell differentiation and points to a critical role of CRAF-dependent growth factor signaling pathway in the postmitotic development of adult-born neurons.
Insights
CRAF signaling is crucial for hippocampal neurogenesis. CRAF deficiency in mice leads to abnormal neural progenitor cells, increased cell death, and impaired neuronal maturation in the hippocampus.
Area of Science:
- Neuroscience
- Cell Biology
- Developmental Biology
Background:
- RAF kinases regulate cell proliferation, differentiation, and survival.
- CRAF kinase is essential for mammalian development; its deficiency causes developmental defects.
- CRAF mutations are linked to Noonan syndrome, associated with neurocognitive impairment.
Purpose of the Study:
- To investigate the role of CRAF signaling in hippocampal development and adult neurogenesis.
- To understand CRAF's contribution to hippocampal dysfunction in Noonan syndrome.
Main Methods:
- Established a CRAF-deficient mouse model by crossing CRAF-deficiency to CD-1 outbred mice.
- Examined neural progenitor proliferation and postmitotic differentiation in the hippocampus.
- Analyzed hippocampal morphology, granule cell layer volume, and cell behavior in CRAF-deficient mice.
Main Results:
- CRAF-deficient mice showed reduced granule cell layer volume.
- Abnormal, rapidly dividing cells were observed in the subgranular zone and hilus of the dentate gyrus.
- CRAF-deficient neural progenitor cells exhibited increased cell death and reduced neuronal maturation.
Conclusions:
- CRAF signaling is vital for hippocampal neural progenitor proliferation.
- CRAF function impacts postmitotic neural cell differentiation and the development of adult-born neurons.
- CRAF-dependent growth factor signaling plays a critical role in adult hippocampal neurogenesis.
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