We report here that microglia exert a surprisingly discrete but functionally critical influence on synaptic plasticity in the mouse hippocampus. Treatment of adult male mice with colony-stimulating factor 1 receptor antagonist PLX5622 (PLX), with resultant depletion of forebrain microglia, did not disturb basal synaptic transmission at four synaptic connections in the hippocampus. Long-term potentiation (LTP) was also intact for three of these sites, but the singular, endocannabinoid-dependent form of LTP expressed by lateral perforant path (LPP) input to the dentate gyrus (DG) was severely impaired. The LPP-LTP defect occurred in conjunction with a pronounced increase in DG (but not neocortical) levels of 2-arachidonoylglycerol (2-AG), the retrograde (spine-to-terminal) endocannabinoid messenger that initiates LPP-LTP. Despite this, concentrations of the 2-AG synthetic enzyme diacylglycerol lipase were not affected by PLX treatment. Synaptic levels of the cannabinoid type 1 receptor, which mediates 2-AG effects on LPP-LTP, were similarly unaffected. Prior work has implicated the LPP in episodic memory. We determined that the LPP-LTP impairment in PLX-treated mice was accompanied by a failure to acquire the three basic elements of an episode: the identities, locations, and presentation order for a collection of olfactory cues. Treatment with JZL184, which inhibits the 2-AG degradative enzyme monoglyceride lipase, restored both LPP-LTP and episodic "What" encoding in PLX-treated mice. We conclude that microglia selectively regulate endocannabinoid transmission at the LPPâDG synapse and thereby potently influence synaptic plasticity at the initial stage of a corticohippocampal circuit that is critical for episodic memory.
Microglia Support Both the Singular Form of LTP Expressed by the Lateral Perforant Path and Episodic Memory.
小胶质细胞支持由外侧穿通通路表达的单一形式的长时程增强(LTP)和情景记忆
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作者:Chavez Jasmine, Le Aliza A, Quintanilla Julian, Lauterborn Julie C, Jia Yousheng, Tagne Alex Mabou, Lee Hye-Lim, Jung Kwang-Mook, Piomelli Daniele, Lynch Gary, Gall Christine M
| 期刊: | Journal of Neuroscience | 影响因子: | 4.000 |
| 时间: | 2025 | 起止号: | 2025 Jun 25; 45(26):e1322242025 |
| doi: | 10.1523/JNEUROSCI.1322-24.2025 | 研究方向: | 细胞生物学 |
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