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颗粒酶 A 通过刺激破骨细胞生成导致小鼠发生炎症性关节炎。

Granzyme A Contributes to Inflammatory Arthritis in Mice Through Stimulation of Osteoclastogenesis.

机构信息

Biomedical Research Centre of Aragon, Zaragoza, Spain.

NorthShore University Healthcare System, Evanston, Illinois.

出版信息

Arthritis Rheumatol. 2017 Feb;69(2):320-334. doi: 10.1002/art.39857.

Abstract

OBJECTIVE

Granzyme A (GzmA) levels are elevated in the plasma and synovium of patients with rheumatoid arthritis (RA), suggesting involvement of this protease in the pathogenesis of the disease. GzmA contributes to sepsis by regulating the production of proinflammatory cytokines. The purpose of this study was to evaluate the contribution of GzmA to the pathogenesis of RA in vivo and to examine the possibility that GzmA acting via tumor necrosis factor (TNF) stimulates osteoclastogenesis.

METHODS

Inflammatory arthritis induced by type II collagen was evaluated in wild-type, GzmA-deficient, and perforin-deficient mice. The osteoclastogenic potential of GzmA was examined in vitro using bone marrow cells and colony-forming unit-granulocyte-macrophage (CFU-GM) cells and in vivo using GzmA-deficient mice.

RESULTS

Gene deletion of GzmA attenuated collagen-induced arthritis, including serum levels of proinflammatory cytokines, joint damage, and bone erosion in affected mice, suggesting that osteoclast activity is reduced in the absence of GzmA. Accordingly, GzmA-treated bone marrow cells produced multinucleated cells that fulfilled the criteria for mature osteoclasts: tartrate-resistant acid phosphatase (TRAP) activity, β integrin expression, calcitonin receptor expression, and resorptive activity on dentin slices. GzmA appeared to act without accessory cells, and its activity was not affected by osteoprotegerin, suggesting a minor contribution of RANKL. It also induced the expression and secretion of TNF. Neutralization of TNF or stimulation of CFU-GM cells from TNF mice prevented GzmA-induced osteoclastogenesis. GzmA-deficient mice had reduced osteoclastogenesis in vivo (fewer calcitonin receptor-positive multinucleated cells and fewer transcripts for cathepsin K, matrix metalloproteinase 9, and TRAP in joints) and reduced serum levels of C-terminal telopeptide of type I collagen.

CONCLUSION

GzmA contributes to the joint destruction of RA partly by promoting osteoclast differentiation.

摘要

目的

颗粒酶 A(GzmA)在类风湿关节炎(RA)患者的血浆和滑膜中水平升高,提示这种蛋白酶参与了疾病的发病机制。GzmA 通过调节促炎细胞因子的产生而导致脓毒症。本研究旨在评估 GzmA 在体内对 RA 发病机制的贡献,并研究 GzmA 通过肿瘤坏死因子(TNF)发挥作用刺激破骨细胞形成的可能性。

方法

在野生型、GzmA 缺陷型和穿孔素缺陷型小鼠中评估 II 型胶原诱导的炎症性关节炎。在体外使用骨髓细胞和集落形成单位-粒细胞-巨噬细胞(CFU-GM)细胞以及在 GzmA 缺陷型小鼠中体内研究 GzmA 的破骨细胞形成潜力。

结果

GzmA 基因缺失减轻了胶原诱导性关节炎,包括血清中促炎细胞因子水平、关节损伤和受影响小鼠的骨侵蚀,表明 GzmA 缺乏时破骨细胞活性降低。相应地,GzmA 处理的骨髓细胞产生了符合成熟破骨细胞标准的多核细胞:抗酒石酸酸性磷酸酶(TRAP)活性、β整合素表达、降钙素受体表达和牙本质切片上的吸收活性。GzmA 似乎无需辅助细胞即可发挥作用,其活性不受骨保护素的影响,表明 RANKL 的贡献较小。它还诱导 TNF 的表达和分泌。中和 TNF 或刺激 TNF 小鼠的 CFU-GM 细胞可防止 GzmA 诱导的破骨细胞形成。GzmA 缺陷型小鼠体内破骨细胞形成减少(降钙素受体阳性多核细胞减少,关节中组织蛋白酶 K、基质金属蛋白酶 9 和 TRAP 的转录物减少),血清中 I 型胶原 C 端肽水平降低。

结论

GzmA 通过促进破骨细胞分化部分导致 RA 的关节破坏。

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