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持续激活 P2X7 诱导 MMP-2 引发的切割及功能性嘌呤能受体抑制。

Sustained activation of P2X7 induces MMP-2-evoked cleavage and functional purinoceptor inhibition.

机构信息

School of Allied Health Sciences, Faculty of Health and Life Sciences, De Montfort University, Leicester, UK.

Molecular Medicine Laboratory, Institute of Biomedical and Biomolecular Sciences, School of Pharmacy and Biomedical Sciences, University of Portsmouth, Portsmouth, UK.

出版信息

J Mol Cell Biol. 2018 Jun 1;10(3):229-242. doi: 10.1093/jmcb/mjx030.

Abstract

P2X7 purinoceptor promotes survival or cytotoxicity depending on extracellular adenosine triphosphate (ATP) stimulus intensity controlling its ion channel or P2X7-dependent large pore (LP) functions. Mechanisms governing this operational divergence and functional idiosyncrasy are ill-understood. We have discovered a feedback loop where sustained activation of P2X7 triggers release of active matrix metalloproteinase 2 (MMP-2), which halts ion channel and LP responses via the MMP-2-dependent receptor cleavage. This mechanism operates in cells as diverse as macrophages, dystrophic myoblasts, P2X7-transfected HEK293, and human tumour cells. Given that serum-born MMP-2 activity also blocked receptor functions, P2X7 responses in vivo may decrease in organs with permeable capillaries. Therefore, this mechanism represents an important fine-tuning of P2X7 functions, reliant on both cell-autonomous and extraneous factors. Indeed, it allowed evasion from the ATP-induced cytotoxicity in macrophages and human cancer cells with high P2X7 expression levels. Finally, we demonstrate that P2X7 ablation eliminated gelatinase activity in inflamed dystrophic muscles in vivo. Thus, P2X7 antagonists could be used as an alternative to highly toxic MMP inhibitors in treatments of inflammatory diseases and cancers.

摘要

P2X7 嘌呤能受体根据细胞外三磷酸腺苷 (ATP) 刺激强度控制其离子通道或 P2X7 依赖性大孔 (LP) 功能,从而促进存活或细胞毒性。控制这种操作分歧和功能特性的机制还不清楚。我们发现了一个反馈回路,其中 P2X7 的持续激活触发活性基质金属蛋白酶 2 (MMP-2) 的释放,MMP-2 通过 MMP-2 依赖性受体裂解来阻止离子通道和 LP 反应。该机制在巨噬细胞、营养不良的成肌细胞、转染 P2X7 的 HEK293 和人肿瘤细胞等多种细胞中起作用。鉴于血清来源的 MMP-2 活性也能阻断受体功能,因此具有通透性毛细血管的器官中 P2X7 的反应可能会降低。因此,这种机制代表了 P2X7 功能的重要微调,依赖于细胞自主和外来因素。事实上,它使具有高表达水平的 P2X7 的巨噬细胞和人癌细胞能够逃避 ATP 诱导的细胞毒性。最后,我们证明 P2X7 缺失消除了体内炎症性营养不良肌肉中的明胶酶活性。因此,P2X7 拮抗剂可作为治疗炎症性疾病和癌症的高毒性 MMP 抑制剂的替代物。

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