Autophagy in DG engrams mediates Rac1-dependent forgetting during aging via microglia-mediated synapse elimination
Wang, F.; Ma, L.; Wang, Z.; Chen, R.; Lin, Q.; Jiang, Y.
Show abstract
BACKGROUNDEngrams are considered to be substrates for memory storage, and the adaptive plasticity remolding that switch engrams to an inaccessible state cause forgetting. The normal function of engrams is ensured by the crosstalk between neurons and microglia, the major immune cells in the brain implicated in synapse remodeling and memory processing. However, the cellular processes and molecular mediators between engrams and microglia underlying forgetting are poorly understood. METHODSWe utilized doxycycline (Dox)-dependent robust activity marking (RAM) system to label and manipulate DG engrams encoding contexture fear memory in mice. Combining optogenetics, microglia-specific transcriptomics, fluorescence in situ hybridization and spine morphology analysis, we investigated the potential mechanisms of information exchange between engrams and microglia mediating memory forgetting. RESULTSThe expression of Rac1 in dentate gyrus (DG) engrams upregulated memory encoding. Increased Rac1 activity in DG engrams accelerated forgetting, upregulated autophagy influx and the expression of autophagy protein 7 (Atg7). The elevated ATG7 expression in the engrams activated of DG microglia and promoted forgetting. In addition, the Toll-like receptor (TLR) signal in DG microglia was upregulated when overexpressing ATG7 or activating Rac1 in DG engrams, and mediated the ATG7-dependent synapse remodeling and Rac1-dependent forgetting. CONCLUSIONSIn this study, we found that Rac1 increases ATG7-dependent autophagy in DG engrams, which activated microglia via TLR2/4, to promote spine remodeling and forgetting. These results unravel a novel pathway mediating memory forgetting, and provide a potential therapeutic strategy in the treatment of cognitive disorders such as Alzheimers disease.
Matching journals
The top 7 journals account for 50% of the predicted probability mass.
Similar papers in this journal
Similar papers in this journal
- YTHDF2 in dentate gyrus is the m6A reader mediating m6A modification in hippocampus-dependent learning and memory 95%
- Neural stem and progenitor cells support and protect adult hippocampal function via vascular endothelial growth factor secretion. 94%
- The atypical Rho GTPase Rnd2 is critical for dentate granule neuron development and anxiety-like behavior during adult but not neonatal neurogenesis 94%
Similar papers in this journal
- KDM2B regulates hippocampal morphogenesis by transcriptionally silencing Wnt signaling in neural progenitors 94%
- SKA2 regulated hyperactive secretory autophagy drives neuroinflammation-induced neurodegeneration 94%
- Adenosine triggers early astrocyte reactivity that provokes microglial activation and drives the pathogenesis of sepsis-associated encephalopathy 94%
Similar papers in this journal
- Enriched environment requires remodeling of hippocampal perineuronal nets to trigger memory improvement in Alzheimer's mouse model 94%
- NMDA receptor-targeted enrichment of CaMKIIα improves fear memory 93%
- Sustained Generation of Neurons Destined for Neocortex with Oxidative Metabolic Upregulation upon Filamin Abrogation 93%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.