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作 者:Xiang Li Ru-Yi Chen Jin-Jin Shi Chang-Yun Li Yan-Jun Liu Chang Gao Ming-Rong Gao Shun Zhang Jian-Fei Lu Jia-Feng Cao Guan-Jun Yang Jiong Chen
机构地区:[1]State Key Laboratory for Managing Biotic and Chemical Threats to the Quality and Safety of Agro-products,Ningbo University,Ningbo,Zhejiang,315211,China [2]Laboratory of Biochemistry and Molecular Biology,School of Marine Sciences,Ningbo University,Ningbo,Zhejiang,315211,China [3]Ningbo No.2 Hospital,Ningbo,Zhejiang,315211,China [4]China Ningbo Institute of Life and Health Industry,University of Chinese Academy of Sciences,Ningbo,Zhejiang,315211,China
出 处:《Journal of Pharmaceutical Analysis》2024年第9期1282-1300,共19页药物分析学报(英文版)
基 金:supported by the Natural Science Foundation of Zhejiang Province,China(Grant No.:LY24C190001);the General Scientific Research Project of Education of Zhejiang Province,China(Grant Nos.:Y202352559 and Y202147351);the Starting Research Fund of Ningbo University,China(Grant Nos.:421912073 and 422204123);the Student Research and Innovation Program of Ningbo University,China(Grant Nos.:2023SRIP1810 and 2023SRIP1804).
摘 要:Jumonji domain-containing protein D3(JMJD3)is a 2-oxoglutarate-dependent dioxygenase that specifically removes transcriptional repression marks di-and tri-methylated groups from lysine 27 on histone 3(H3K27me2/3).The erasure of these marks leads to the activation of some associated genes,thereby influencing various biological processes,such as development,differentiation,and immune response.However,comprehensive descriptions regarding the relationship between JMJD3 and inflammation are lacking.Here,we provide a comprehensive overview of JMJD3,including its structure,functions,and involvement in inflammatory pathways.In addition,we summarize the evidence supporting JMJD3's role in several inflammatory diseases,as well as the potential therapeutic applications of JMJD3 inhibitors.Additionally,we also discuss the challenges and opportunities associated with investigating the functions of JMJD3 and developing targeted inhibitors and propose feasible solutions to provide valuable insights into the functional exploration and discovery of potential drugs targeting JMJD3 for inflammatory diseases.
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