Neurogenesis proceeds throughout adulthood in the brain of most mammalian species, but the molecular mechanisms underlying the regulation of stem/progenitor cell proliferation, survival, maturation, and differentiation have not been completely unraveled. We have studied hippocampal neurogenesis in NF-B p50-deficient mice. Here we demonstrate that in absence of p50, the net rate of neural precursor proliferation does not change, but some of the steps leading to the final neuron differentiation status are hampered, resulting in50% reduction in the number of newly born neurons in the adult mutant hippocampus. Additionally, in p50/ mice, we observed a selective defect in short-term spatial memory performance without impairment of hippocampal-dependent spatial long-term memory and learning. Our results highlight the role of NF-B p50 in hippocampal neurogenesis and in short-term spatial memory. Key words: NF-B; neurogenesis; hippocampus; memory; calretinin; doublecortin
Impaired Adult Neurogenesis Associated with Short-Term Memory Defects in NF-?B p50-Deficient Mice
GHI, Piera;
2008-01-01
Abstract
Neurogenesis proceeds throughout adulthood in the brain of most mammalian species, but the molecular mechanisms underlying the regulation of stem/progenitor cell proliferation, survival, maturation, and differentiation have not been completely unraveled. We have studied hippocampal neurogenesis in NF-B p50-deficient mice. Here we demonstrate that in absence of p50, the net rate of neural precursor proliferation does not change, but some of the steps leading to the final neuron differentiation status are hampered, resulting in50% reduction in the number of newly born neurons in the adult mutant hippocampus. Additionally, in p50/ mice, we observed a selective defect in short-term spatial memory performance without impairment of hippocampal-dependent spatial long-term memory and learning. Our results highlight the role of NF-B p50 in hippocampal neurogenesis and in short-term spatial memory. Key words: NF-B; neurogenesis; hippocampus; memory; calretinin; doublecortinFile | Dimensione | Formato | |
---|---|---|---|
J Neurosci 2008.pdf
Accesso riservato
Tipo di file:
MATERIALE NON BIBLIOGRAFICO
Dimensione
381.71 kB
Formato
Adobe PDF
|
381.71 kB | Adobe PDF | Visualizza/Apri Richiedi una copia |
I documenti in IRIS sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione.