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Major Pathogenic Steps in Human Lupus Can be Effectively Suppressed by Nucleosomal Histone Peptide Epitope-Induced Regulatory Immunity

机译:人类狼疮的主要致病步骤可以被核糖组蛋白肽表位诱导的调节免疫有效抑制。

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摘要

Low-dose tolerance therapy with nucleosomal histone peptide epitopes blocks lupus disease in mouse models, but effect in humans is unknown. Herein, we found that CD4+CD25highFoxP3+ or CD4+CD45RA+FoxP3low T-cells, and CD8+CD25+FoxP3+ T-cells were all induced durably in PBMCs from inactive lupus patients and healthy subjects by the histone peptide/s themselves, but in active lupus, dexamethasone or hydroxychloroquine unmasked Treg-induction by the peptides. The peptide-induced Treg depended on TGFβ/ALK-5/ pSmad 2/3 signaling, and they expressed TGF-β precursor LAP. Lupus patients’ sera did not inhibit Treg induction. The peptide epitope-induced T cells markedly suppressed type I IFN related gene expression in lupus PBMC. Finally, the peptide epitopes suppressed pathogenic autoantibody production by PBMC from active lupus patients to baseline levels by additional mechanisms besides Treg induction, and as potently as anti-IL6 antibody. Thus, low-dose histone peptide epitopes block pathogenic autoimmune response in human lupus by multiple mechanisms to restore a stable immunoregulatory state.
机译:核小体组蛋白肽表位的低剂量耐受治疗可在小鼠模型中阻断狼疮病,但对人类的作用尚不清楚。在这里,我们发现CD4 + CD25 FoxP3 + 或CD4 + CD45RA + FoxP3 T细胞和CD8 + CD25 + FoxP3 + T细胞均在非活动性狼疮患者和健康受试者的PBMC通过组蛋白肽本身,但是在活动性狼疮中,地塞米松或羟氯喹不能掩盖该肽对Treg的诱导作用。肽诱导的Treg依赖于TGFβ/ ALK-5 / pSmad 2/3信号传导,并且它们表达TGF-β前体LAP。狼疮患者的血清不会抑制Treg的诱导。肽表位诱导的T细胞明显抑制狼疮PBMC中的I型IFN相关基因表达。最后,该肽表位通过除Treg诱导之外的其他机制,将PBMC抑制了活动性狼疮患者的PBMC致病性自身抗体的产生,达到了抗IL6抗体的水平。因此,低剂量组蛋白肽表位通过多种机制阻断人狼疮的致病性自身免疫反应,以恢复稳定的免疫调节状态。

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