<p>Multiple lines of evidence, including clinical and preclinical, associate depression with dysregulated glutamate homeostasis in the central nervous system. The astrocyte-enriched cysteine/glutamate antiporter, xCT, plays a pivotal role in maintaining this homeostasis, and its dysfunction is linked to depressive-like behaviors induced by chronic stress. However, the exact mechanism through which chronic stress results in xCT dysfunction remains poorly understood. In this study, we demonstrate that chronic social defeat stress (CSDS) downregulates xCT expression in the prelimbic cortex (PL), a key cortical region involved in the aetiology of depression, through astroglial kappa opioid receptor (KOR)-dependent, p38 MAPK-mediated upregulation of miR-3084-5p expression, which in turn downregulates xCT expression by inhibiting mRNA that encodes xCT. Knockdown of KORs as well as overexpression of xCT in the PL astrocytes significantly attenuates CSDS-induced depressive-like behaviors. Blockade of p38 MAPK activity or suppression of miR-3084-5p function restores xCT expression and alleviates depressive-like behaviors. Together, this study reveals a novel mechanism by which chronic stress deregulates glutamate homeostasis and consequently results in depression.</p>

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Astroglial kappa opioid receptor-mediated reduction of glutamate exchanger xCT in the prelimbic cortex underlies chronic stress-induced depressive-like behaviors

  • Yexiang Chen,
  • Liu-Bin Guo,
  • Gui-Ying Zan,
  • Chi Xu,
  • Song-Yu Yao,
  • Shuo Wu,
  • Xingcong Jiang,
  • Zihan Liu,
  • Jian-Dong Long,
  • Boyu Liu,
  • Xiaofen He,
  • Xiaomei Shao,
  • Jianqiao Fang,
  • Jing-Gen Liu,
  • Yu-Jun Wang

摘要

Multiple lines of evidence, including clinical and preclinical, associate depression with dysregulated glutamate homeostasis in the central nervous system. The astrocyte-enriched cysteine/glutamate antiporter, xCT, plays a pivotal role in maintaining this homeostasis, and its dysfunction is linked to depressive-like behaviors induced by chronic stress. However, the exact mechanism through which chronic stress results in xCT dysfunction remains poorly understood. In this study, we demonstrate that chronic social defeat stress (CSDS) downregulates xCT expression in the prelimbic cortex (PL), a key cortical region involved in the aetiology of depression, through astroglial kappa opioid receptor (KOR)-dependent, p38 MAPK-mediated upregulation of miR-3084-5p expression, which in turn downregulates xCT expression by inhibiting mRNA that encodes xCT. Knockdown of KORs as well as overexpression of xCT in the PL astrocytes significantly attenuates CSDS-induced depressive-like behaviors. Blockade of p38 MAPK activity or suppression of miR-3084-5p function restores xCT expression and alleviates depressive-like behaviors. Together, this study reveals a novel mechanism by which chronic stress deregulates glutamate homeostasis and consequently results in depression.