4.7 Article

Corticosterone impairs gap junctions in the prefrontal cortical and hippocampal astrocytes via different mechanisms

期刊

NEUROPHARMACOLOGY
卷 131, 期 -, 页码 20-30

出版社

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.neuropharm.2017.12.003

关键词

Corticosterone; Astrocyte; Depression; Gap junction; Connexin43

资金

  1. National Natural Science Foundation of China [81573636, 81773924, U1402221, 81560663]
  2. PUMC Youth Fund [3332016058]
  3. Fundamental Research Funds for the Central Universities [2014RC03, 2016RC350002]
  4. CAMS Innovation Fund for Medical Sciences (CIFMS) [2016-I2M-1-004]
  5. Scientific Research Foundation of the Higher Education Institutions of Hunan Province [15K091]
  6. Beijing Key Laboratory of New Drug Mechanisms and Pharmacological Evaluation Study [BZ0150]

向作者/读者索取更多资源

Increasing evidence has implicated astrocyte pathology in the etiopathology of major depressive disorder (MDD). In particular, dysfunction of gap junctions in astrocytes is a potential target for MDD treatment. However, the mechanism underlying stress-induced dysfunction of gap junctions is still unknown. We therefore studied the mechanism of stress-induced dysfunction of gap junctions in prefrontal cortical and hippocampal astrocytes. Corticosterone (CORT) was used to induce stress conditions; CORT damaged the function of gap junctions, which resulted from less distribution of connexin43 (Cx43) on membranes and the enhanced phosphorylation of Cx43 at 5368. Moreover, CORT downregulated the biosynthesis of Cx43 but increased the degradation of Cx43. Interestingly, both autophagy and the proteasome system were involved in the degradation of Cx43 in prefrontal cortical astrocytes, but only the proteasome system was involved in the degradation of Cx43 in hippocampal astrocytes. CORT significantly induced the formation of annular gap junction vesicles in prefrontal cortical astrocytes; however, Cx43 mainly presented as small dots in the hippocampal astrocytes. Furthermore, CORT increased N-Cadherin expression and the interactions of Cx43 with ZO-1/idrebrin in prefrontal cortical astrocytes, but these interactions were oppositely modulated in hippocampal astrocytes. In conclusion, this study clarified the alternations of the Cx43 life cycle in the prefrontal cortical and hippocampal astrocytes exposed to CORT, which may contribute to our understanding of the mechanisms underlying stress-induced dysfunction of gap junctions. (C) 2017 Elsevier Ltd. All rights reserved.

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