雷公藤醇
关节炎
PI3K/AKT/mTOR通路
化学
自噬
农奴
细胞生物学
滑膜
炎症
促炎细胞因子
癌症研究
医学
信号转导
免疫学
细胞凋亡
生物
生物化学
ATP酶
酶
作者
Vincent Kam Wai Wong,Congling Qiu,Su Xu,Betty Yuen Kwan Law,Jianming Wu,Hui Wang,Francesco Michelangeli,Ivo Ricardo de Seabra Rodrigues Dias,Yuan Qu,Tsz Wai Chan,Yu Han,Ni Zhang,Simon Wing Fai Mok,Xi Chen,Lu Yu,Hudan Pan,Sami Hamdoun,Thomas Efferth,Wen Jing Yu,Wei Zhang
摘要
Background and Purpose Celastrol exhibits anti‐arthritic effects in rheumatoid arthritis (RA), but the role of celastrol‐mediated Ca 2+ mobilization in treatment of RA remains undefined. Here, we describe a regulatory role for celastrol‐induced Ca 2+ signalling in synovial fibroblasts of RA patients and adjuvant‐induced arthritis (AIA) in rats. Experimental Approach We used computational docking, Ca 2+ dynamics and functional assays to study the sarcoplasmic/endoplasmic reticulum Ca 2+ ATPase pump (SERCA). In rheumatoid arthritis synovial fibroblasts (RASFs)/rheumatoid arthritis fibroblast‐like synoviocytes (RAFLS), mechanisms of Ca 2+ ‐mediated autophagy were analysed by histological, immunohistochemical and flow cytometric techniques. Anti‐arthritic effects of celastrol, autophagy induction, and growth rate of synovial fibroblasts in AIA rats were monitored by microCT and immunofluorescence staining. mRNA from joint tissues of AIA rats was isolated for transcriptional analysis of inflammatory genes, using siRNA methods to study calmodulin, calpains, and calcineurin. Key Results Celastrol inhibited SERCA to induce autophagy‐dependent cytotoxicity in RASFs/RAFLS via Ca 2+ /calmodulin‐dependent kinase kinase‐β–AMP‐activated protein kinase–mTOR pathway and repressed arthritis symptoms in AIA rats. BAPTA/AM hampered the in vitro and in vivo effectiveness of celastrol. Inflammatory‐ and autoimmunity‐associated genes down‐regulated by celastrol in joint tissues of AIA rat were restored by BAPTA/AM. Knockdown of calmodulin, calpains, and calcineurin in RAFLS confirmed the role of Ca 2+ in celastrol‐regulated gene expression. Conclusion and Implications Celastrol triggered Ca 2+ signalling to induce autophagic cell death in RASFs/RAFLS and ameliorated arthritis in AIA rats mediated by calcium‐dependent/‐binding proteins facilitating the exploitation of anti‐arthritic drugs based on manipulation of Ca 2+ signalling.
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