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Ca2+ signalling plays a role in celastrol-mediated suppression of synovial fibroblasts of rheumatoid arthritis patients and experimental arthritis in rats

机译:Ca2+信号转导在类风湿性关节炎患者滑膜成纤维细胞和大鼠实验性关节炎的Celastrol介导抑制中发挥作用

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Background and Purpose Celastrol exhibits anti-arthritic effects in rheumatoid arthritis (RA), but the role of celastrol-mediated Ca2+ mobilization in treatment of RA remains undefined. Here, we describe a regulatory role for celastrol-induced Ca2+ signalling in synovial fibroblasts of RA patients and adjuvant-induced arthritis (AIA) in rats. Experimental Approach We used computational docking, Ca2+ dynamics and functional assays to study the sarcoplasmic/endoplasmic reticulum Ca2+ ATPase pump (SERCA). In rheumatoid arthritis synovial fibroblasts (RASFs)/rheumatoid arthritis fibroblast-like synoviocytes (RAFLS), mechanisms of Ca2+-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 Ca2+/calmodulin-dependent kinase kinase-beta-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 Ca2+ in celastrol-regulated gene expression. Conclusion and Implications Celastrol triggered Ca2+ 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 Ca2+ signalling.
机译:背景和目的 Celastrol 在类风湿性关节炎 (RA) 中表现出抗关节炎作用,但 celastrol 介导的 Ca2+ 动员在治疗 RA 中的作用仍未确定。在这里,我们描述了 celastrol 诱导的 Ca2+ 信号传导在 RA 患者滑膜成纤维细胞和大鼠佐剂诱导的关节炎 (AIA) 中的调节作用。实验方法 我们使用计算对接、Ca2+ 动力学和功能测定来研究肌质/内质网 Ca2+ ATP 酶泵 (SERCA)。在类风湿关节炎滑膜成纤维细胞(RASFs)/类风湿关节炎成纤维细胞样滑膜细胞(RAFLS)中,通过组织学、免疫组织化学和流式细胞术分析了Ca2+介导的自噬机制。通过microCT和免疫荧光染色监测AIA大鼠Celastrol的抗关节炎作用、自噬诱导和滑膜成纤维细胞的生长速率。从AIA大鼠的关节组织中分离出mRNA,用于炎症基因的转录分析,使用siRNA方法研究钙调蛋白、钙蛋白酶和钙调磷酸酶。主要结果 Celastrol通过Ca2+/钙调蛋白依赖性激酶激酶-β-AMP活化蛋白激酶-mTOR通路抑制SERCA诱导RASFs/RAFLS自噬依赖性细胞毒性,并抑制AIA大鼠关节炎症状。BAPTA/AM阻碍了celastrol的体外和体内有效性。BAPTA/AM恢复了AIA大鼠关节组织中Celastrol下调的炎症和自身免疫相关基因。在 RAFLS 中敲除钙调蛋白、钙蛋白酶和钙调磷酸酶证实了 Ca2+ 在天体调节基因表达中的作用。结论与启示 Celastrol 触发 Ca2+ 信号传导诱导 RASFs/RAFLS 自噬细胞死亡,并改善钙依赖性/结合蛋白介导的 AIA 大鼠关节炎,促进基于 Ca2+ 信号传导的抗关节炎药物的开发。

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