Cargando…

CB2R Activation Regulates TFEB-Mediated Autophagy and Affects Lipid Metabolism and Inflammation of Astrocytes in POCD

Evidence suggests that the accumulation of lipid drots (LDs) accelerates damage to mitochondria and increases the release of inflammatory factors. These have been implicated as a mechanism underlying neurodegenerative diseases or tumors and aging-related diseases such as postoperative cognitive dysf...

Descripción completa

Detalles Bibliográficos
Autores principales: Zhang, Lieliang, Wang, Xifeng, Yu, Wen, Ying, Jun, Fang, Pu, Zheng, Qingcui, Feng, Xiaojin, Hu, Jialing, Xiao, Fan, Chen, Shoulin, Wei, Gen, Lin, Yue, Liu, Xing, Yang, Danying, Fang, Yang, Xu, Guohai, Hua, Fuzhou
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8981088/
https://www.ncbi.nlm.nih.gov/pubmed/35392078
http://dx.doi.org/10.3389/fimmu.2022.836494
_version_ 1784681529167839232
author Zhang, Lieliang
Wang, Xifeng
Yu, Wen
Ying, Jun
Fang, Pu
Zheng, Qingcui
Feng, Xiaojin
Hu, Jialing
Xiao, Fan
Chen, Shoulin
Wei, Gen
Lin, Yue
Liu, Xing
Yang, Danying
Fang, Yang
Xu, Guohai
Hua, Fuzhou
author_facet Zhang, Lieliang
Wang, Xifeng
Yu, Wen
Ying, Jun
Fang, Pu
Zheng, Qingcui
Feng, Xiaojin
Hu, Jialing
Xiao, Fan
Chen, Shoulin
Wei, Gen
Lin, Yue
Liu, Xing
Yang, Danying
Fang, Yang
Xu, Guohai
Hua, Fuzhou
author_sort Zhang, Lieliang
collection PubMed
description Evidence suggests that the accumulation of lipid drots (LDs) accelerates damage to mitochondria and increases the release of inflammatory factors. These have been implicated as a mechanism underlying neurodegenerative diseases or tumors and aging-related diseases such as postoperative cognitive dysfunction (POCD), nevertheless, accumulation of lipid droplets has not been extensively studied in the central nervous system (CNS). Here, we found that after surgery, there was activation of astrocytes and lipid accumulation in the hippocampus. However, cannabinoid receptor type II (CB2R) activation significantly reduced lipid accumulation in astrocytes and change the expression of genes related to lipid metabolism. CB2R reduces the release of the inflammatory factors interleukin-1 beta (IL-1β) and interleukin 6 (IL-6) in peripheral serum and simultaneously improves cognitive ability in mice with POCD. Further research on mechanisms indicates that CB2R activation promotes the nuclear entry of the bHLH-leucine zipper transcription factor, the transcription factor EB (TFEB), and which is a master transcription factor of the autophagy–lysosomal pathway, also reduces TFEB-S211 phosphorylation. When CB2R promotes TFEB into the nucleus, TFEB binds at two sites within promoter region of PGC1α, promoting PGC1α transcription and accelerating downstream lipid metabolism. The aforementioned process leads to autophagy activation and decreases cellular lipid content. This study uncovers a new mechanism allowing CB2R to regulate lipid metabolism and inflammation in POCD.
format Online
Article
Text
id pubmed-8981088
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher Frontiers Media S.A.
record_format MEDLINE/PubMed
spelling pubmed-89810882022-04-06 CB2R Activation Regulates TFEB-Mediated Autophagy and Affects Lipid Metabolism and Inflammation of Astrocytes in POCD Zhang, Lieliang Wang, Xifeng Yu, Wen Ying, Jun Fang, Pu Zheng, Qingcui Feng, Xiaojin Hu, Jialing Xiao, Fan Chen, Shoulin Wei, Gen Lin, Yue Liu, Xing Yang, Danying Fang, Yang Xu, Guohai Hua, Fuzhou Front Immunol Immunology Evidence suggests that the accumulation of lipid drots (LDs) accelerates damage to mitochondria and increases the release of inflammatory factors. These have been implicated as a mechanism underlying neurodegenerative diseases or tumors and aging-related diseases such as postoperative cognitive dysfunction (POCD), nevertheless, accumulation of lipid droplets has not been extensively studied in the central nervous system (CNS). Here, we found that after surgery, there was activation of astrocytes and lipid accumulation in the hippocampus. However, cannabinoid receptor type II (CB2R) activation significantly reduced lipid accumulation in astrocytes and change the expression of genes related to lipid metabolism. CB2R reduces the release of the inflammatory factors interleukin-1 beta (IL-1β) and interleukin 6 (IL-6) in peripheral serum and simultaneously improves cognitive ability in mice with POCD. Further research on mechanisms indicates that CB2R activation promotes the nuclear entry of the bHLH-leucine zipper transcription factor, the transcription factor EB (TFEB), and which is a master transcription factor of the autophagy–lysosomal pathway, also reduces TFEB-S211 phosphorylation. When CB2R promotes TFEB into the nucleus, TFEB binds at two sites within promoter region of PGC1α, promoting PGC1α transcription and accelerating downstream lipid metabolism. The aforementioned process leads to autophagy activation and decreases cellular lipid content. This study uncovers a new mechanism allowing CB2R to regulate lipid metabolism and inflammation in POCD. Frontiers Media S.A. 2022-03-22 /pmc/articles/PMC8981088/ /pubmed/35392078 http://dx.doi.org/10.3389/fimmu.2022.836494 Text en Copyright © 2022 Zhang, Wang, Yu, Ying, Fang, Zheng, Feng, Hu, Xiao, Chen, Wei, Lin, Liu, Yang, Fang, Xu and Hua https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Immunology
Zhang, Lieliang
Wang, Xifeng
Yu, Wen
Ying, Jun
Fang, Pu
Zheng, Qingcui
Feng, Xiaojin
Hu, Jialing
Xiao, Fan
Chen, Shoulin
Wei, Gen
Lin, Yue
Liu, Xing
Yang, Danying
Fang, Yang
Xu, Guohai
Hua, Fuzhou
CB2R Activation Regulates TFEB-Mediated Autophagy and Affects Lipid Metabolism and Inflammation of Astrocytes in POCD
title CB2R Activation Regulates TFEB-Mediated Autophagy and Affects Lipid Metabolism and Inflammation of Astrocytes in POCD
title_full CB2R Activation Regulates TFEB-Mediated Autophagy and Affects Lipid Metabolism and Inflammation of Astrocytes in POCD
title_fullStr CB2R Activation Regulates TFEB-Mediated Autophagy and Affects Lipid Metabolism and Inflammation of Astrocytes in POCD
title_full_unstemmed CB2R Activation Regulates TFEB-Mediated Autophagy and Affects Lipid Metabolism and Inflammation of Astrocytes in POCD
title_short CB2R Activation Regulates TFEB-Mediated Autophagy and Affects Lipid Metabolism and Inflammation of Astrocytes in POCD
title_sort cb2r activation regulates tfeb-mediated autophagy and affects lipid metabolism and inflammation of astrocytes in pocd
topic Immunology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8981088/
https://www.ncbi.nlm.nih.gov/pubmed/35392078
http://dx.doi.org/10.3389/fimmu.2022.836494
work_keys_str_mv AT zhanglieliang cb2ractivationregulatestfebmediatedautophagyandaffectslipidmetabolismandinflammationofastrocytesinpocd
AT wangxifeng cb2ractivationregulatestfebmediatedautophagyandaffectslipidmetabolismandinflammationofastrocytesinpocd
AT yuwen cb2ractivationregulatestfebmediatedautophagyandaffectslipidmetabolismandinflammationofastrocytesinpocd
AT yingjun cb2ractivationregulatestfebmediatedautophagyandaffectslipidmetabolismandinflammationofastrocytesinpocd
AT fangpu cb2ractivationregulatestfebmediatedautophagyandaffectslipidmetabolismandinflammationofastrocytesinpocd
AT zhengqingcui cb2ractivationregulatestfebmediatedautophagyandaffectslipidmetabolismandinflammationofastrocytesinpocd
AT fengxiaojin cb2ractivationregulatestfebmediatedautophagyandaffectslipidmetabolismandinflammationofastrocytesinpocd
AT hujialing cb2ractivationregulatestfebmediatedautophagyandaffectslipidmetabolismandinflammationofastrocytesinpocd
AT xiaofan cb2ractivationregulatestfebmediatedautophagyandaffectslipidmetabolismandinflammationofastrocytesinpocd
AT chenshoulin cb2ractivationregulatestfebmediatedautophagyandaffectslipidmetabolismandinflammationofastrocytesinpocd
AT weigen cb2ractivationregulatestfebmediatedautophagyandaffectslipidmetabolismandinflammationofastrocytesinpocd
AT linyue cb2ractivationregulatestfebmediatedautophagyandaffectslipidmetabolismandinflammationofastrocytesinpocd
AT liuxing cb2ractivationregulatestfebmediatedautophagyandaffectslipidmetabolismandinflammationofastrocytesinpocd
AT yangdanying cb2ractivationregulatestfebmediatedautophagyandaffectslipidmetabolismandinflammationofastrocytesinpocd
AT fangyang cb2ractivationregulatestfebmediatedautophagyandaffectslipidmetabolismandinflammationofastrocytesinpocd
AT xuguohai cb2ractivationregulatestfebmediatedautophagyandaffectslipidmetabolismandinflammationofastrocytesinpocd
AT huafuzhou cb2ractivationregulatestfebmediatedautophagyandaffectslipidmetabolismandinflammationofastrocytesinpocd