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Published on: March 15, 2024
Deficient Autophagy in Microglia Aggravates Repeated Social Defeat Stress-Induced Social Avoidance
Mai Sakai1,2, Zhiqian Yu1, Ryo Hirayama1
1Department of Psychiatry, Graduate School of Medicine, Tohoku University, Sendai, Japan.
Abstract:
Major depressive disorder (MDD) is associated with repeated exposure to environmental stress. Autophagy is activated under various stress conditions that are associated with several diseases in the brain. This study was aimed at elucidating the autophagy signaling changes in the prefrontal cortex (PFC) under repeated social defeat (RSD) to investigate the involvement of microglial autophagy in RSD-induced behavioral changes. We found that RSD stress, an animal model of MDD, significantly induced initial autophagic signals followed by increased transcription of autophagy-related genes (Atg6, Atg7, and Atg12) in the PFC. Similarly, significantly increased transcripts of ATGs (Atg6, Atg7, Atg12, and Atg5) were confirmed in the postmortem PFC of patients with MDD. The protein levels of the prefrontal cortical LC3B were significantly increased, whereas p62 was significantly decreased in the resilient but not in susceptible mice and patients with MDD. This indicates that enhanced autophagic flux may alleviate stress-induced depression. Furthermore, we identified that FKBP5, an early-stage autophagy regulator, was significantly increased in the PFC of resilient mice at the transcript and protein levels. In addition, the resilient mice exhibited enhanced autophagic flux in the prefrontal cortical microglia, and the autophagic deficiency in microglia aggravated RSD-induced social avoidance, indicating that microglial autophagy involves stress-induced behavioral changes.
Insights
Repeated social defeat stress activates autophagy in the brain
Area of Science:
- Neuroscience
- Molecular Biology
- Cellular Biology
Background:
- Major depressive disorder (MDD) is linked to chronic stress.
- Autophagy, a cellular degradation process, is activated by stress and implicated in brain diseases.
Purpose of the Study:
- To investigate changes in autophagy signaling within the prefrontal cortex (PFC) following repeated social defeat (RSD).
- To explore the role of microglial autophagy in behavioral alterations induced by RSD, an animal model of MDD.
Main Methods:
- Analysis of autophagy-related gene (Atg) and protein expression in the PFC of mice subjected to RSD.
- Examination of postmortem PFC tissue from human MDD patients.
- Assessment of microglial autophagy function and its impact on social behavior.
Main Results:
- RSD stress increased autophagic signals and Atg gene transcription in the PFC.
- Increased Atg transcripts and LC3B protein, with decreased p62, were observed in resilient mice and MDD patients, suggesting enhanced autophagic flux.
- FKBP5, an autophagy regulator, was upregulated in resilient mice.
- Deficiency in microglial autophagy worsened RSD-induced social avoidance.
Conclusions:
- Enhanced autophagic flux in the PFC, particularly in microglia, may protect against stress-induced depression.
- Microglial autophagy plays a crucial role in modulating behavioral responses to chronic stress.

