长时程增强
神经科学
颗粒细胞
齿状回
海马结构
生物
兴奋性突触后电位
莫里斯水上航行任务
突触可塑性
海马体
抑制性突触后电位
受体
遗传学
作者
Raquel Herrero-Labrador,Joaquín Fernández‐Irigoyen,Rebeca Vecino,Candela González-Arias,Karina Ausín,Inmaculada Crespo,Francisco J. Fernández Acosta,Vanesa Nieto‐Estévez,María José Román,Gertrudis Perea,Ignacio Torres‐Alemán,Enrique Santamaría,Carlos Vicario‐Abejón
出处
期刊:Life science alliance
[Life Science Alliance]
日期:2023-07-18
卷期号:6 (10): e202201691-e202201691
被引量:3
标识
DOI:10.26508/lsa.202201691
摘要
Insulin-like growth factor-I (IGF-I) exerts multiple actions, yet the role of IGF-I from different sources is poorly understood. Here, we explored the functional and behavioral consequences of the conditional deletion of Igf-I in the nervous system (Igf-I Δ/Δ), and demonstrated that long-term potentiation was impaired in hippocampal slices. Moreover, Igf-I Δ/Δ mice showed spatial memory deficits in the Morris water maze, and the significant sex-dependent differences displayed by Igf-I Ctrl/Ctrl mice disappeared in Igf-I Δ/Δ mice in the open field and rota-rod tests. Brain Igf-I deletion disorganized the granule cell layer of the dentate gyrus (DG), and it modified the relative expressions of GAD and VGLUT1, which are preferentially localized to inhibitory and excitatory presynaptic terminals. Furthermore, Igf-I deletion altered protein modules involved in receptor trafficking, synaptic proteins, and proteins that functionally interact with estrogen and androgen metabolism. Our findings indicate that brain IGF-I is crucial for long-term potentiation, and that it is involved in the regulation of spatial memory and sexual dimorphic behaviors, possibly by maintaining the granule cell layer structure and the stability of synaptic-related protein modules.
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