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首页> 外文期刊>DNA and Cell Biology >Genomic Analysis and Differential Expression of HMG and S100A Family in Human Arthritis: Upregulated Expression of Chemokines, IL-8 and Nitric Oxide by HMGB1
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Genomic Analysis and Differential Expression of HMG and S100A Family in Human Arthritis: Upregulated Expression of Chemokines, IL-8 and Nitric Oxide by HMGB1

机译:HMG和S100A家族在人类关节炎中的基因组分析和差异表达:HMGB1上调趋化因子,IL-8和一氧化氮的表达

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摘要

We applied global gene expression arrays, quantitative real-time PCR, immunostaining, and functional assays to untangle the role of High Mobility Groups proteins (HMGs) in human osteoarthritis (OA)-affected cartilage. Bioinformatics analysis showed increased mRNA expression of Damage-Associated Molecular Patterns (DAMPs): HMGA, HMGB, HMGN, SRY, LEF1, HMGB1, MMPs, and HMG/RAGE-interacting molecules (spondins and S100A4, S100A10, and S100A11) in human OA-affected cartilage as compared with normal cartilage. HMGB2 was down-regulated in human OA-affected cartilage. Immunohistological staining identified HMGB1 in chondrocytes in the superficial cartilage. Cells of the deep cartilage and subchondral bone showed increased expression of HMGB1 in OA-affected cartilage. HMGB1 was expressed in the nucleus, cytosol, and extracellular milieu of chondrocytes in cartilage. Furthermore, HMGB1 was spontaneously released from human OA-affected cartilage in ex vivo conditions. The effects of recombinant HMGB1 was tested on human cartilage and chondrocytes in vitro. HMGB1 stimulated mRNA of 2 NF kappa B gene enhancers (NF kappa B1 and NF kappa B2), 16 CC and CXC chemokines (IL-8, CCL2, CCL20, CCL3, CCL3L1, CCL3L3, CCL4, CCL4L1, CCL4L2, CCL5, CCL8, CXCL1, CXCL10, CXCL2, CXCL3, and CXCL6) by >= 10-fold. Furthermore, HMGB1 and IL-1 beta and/or tumor necrosis factor alpha (but not HMGI/Y) also significantly induced inducible nitric oxide synthase, NO, and interleukin (IL)-8 production in human cartilage and chondrocytes. The recombinant HMGB1 utilized in this study shows properties that are similar to disulfide-HMGB1. The differential, stage and/or tissue-specific expression of HMGB1, HMGB2, and S100A in cartilage was associated with regions of pathology and/or cartilage homeostasis in human OA-affected cartilage. Noteworthy similarities in the expression of mouse and human HMGB1 and HMGB2 were conserved in normal and arthritis-affected cartilage. The multifunctional forms of HMGB1 and S100A could perpetuate damage-induced cartilage inflammation in late-stage OA-affected joints similar to sterile inflammation. The paracrine effects of HMGB1 can induce chemokines and NO that are perceived to change cartilage homeostasis in human OA-affected cartilage.
机译:我们应用了全球基因表达阵列,定量实时PCR,免疫染色和功能测定法来阐明高迁移率族蛋白(HMG)在人类骨关节炎(OA)受影响的软骨中的作用。生物信息学分析显示,人OA中与损伤相关的分子模式(DAMP):HMGA,HMGB,HMGN,SRY,LEF1,HMGB1,MMP和HMG / RAGE相互作用分子(spondins和S100A4,S100A10和S100A11)的mRNA表达增加。与正常软骨相比受影响的软骨。 HMGB2在受人OA影响的软骨中下调。免疫组织学染色鉴定了浅表软骨软骨细胞中的HMGB1。深层软骨和软骨下骨的细胞在受OA影响的软骨中显示HMGB1的表达增加。 HMGB1在软骨中的软骨细胞核,胞质和细胞外环境中表达。此外,HMGB1在离体条件下自人OA受影响的软骨中自发释放。在体外测试了重组HMGB1对人软骨和软骨细胞的作用。 HMGB1刺激2种NFκB基因增强子(NFκB1和NFκB2),16种CC和CXC趋化因子(IL-8,CCL2,CCL20,CCL3,CCL3L1,CCL3L3,CCL4,CCL4L1,CCL4L2,CCL5,CCL8 CXCL1,CXCL10,CXCL2,CXCL3和CXCL6)> = 10倍。此外,HMGB1和IL-1β和/或肿瘤坏死因子α(但不是HMGI / Y)也显着诱导人软骨和软骨细胞中诱导型一氧化氮合酶,NO和白介素(IL)-8的产生。本研究中使用的重组HMGB1显示出与二硫键HMGB1相似的特性。 HMGB1,HMGB2和S100A在软骨中的差异,阶段和/或组织特异性表达与人OA受影响的软骨中的病理区域和/或软骨稳态有关。在正常和受关节炎影响的软骨中,小鼠和人HMGB1和HMGB2在表达上的显着相似性得以保留。 HMGB1和S100A的多功能形式可以使受OA影响的晚期关节中的损伤诱导的软骨炎症永存,类似于无菌炎症。 HMGB1的旁分泌作用可诱导趋化因子和NO,这些趋化因子和NO被认为会改变受人OA影响的软骨中的软骨稳态。

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