长链非编码 RNA HOTAIR 通过 miRNA 34a 依赖性激活 NOTCH 驱动系统性硬化症中 EZH2 依赖性肌成纤维细胞激活。
Long non-coding RNA HOTAIR drives EZH2-dependent myofibroblast activation in systemic sclerosis through miRNA 34a-dependent activation of NOTCH.
机构信息
Leeds Institute of Rheumatic and Musculoskeletal Medicine, University of Leeds, Leeds, West Yorkshire, UK.
Rheumatology Department of Lucania San Carlo Hospital, Potenza, Italy, Rheumatology Institute of Lucania (IReL), Potenza, Italy.
出版信息
Ann Rheum Dis. 2020 Apr;79(4):507-517. doi: 10.1136/annrheumdis-2019-216542. Epub 2020 Feb 10.
BACKGROUND
Systemic sclerosis (SSc) is characterised by autoimmune activation, tissue and vascular fibrosis in the skin and internal organs. Tissue fibrosis is driven by myofibroblasts, that are known to maintain their phenotype in vitro, which is associated with epigenetically driven trimethylation of lysine 27 of histone 3 (H3K27me3).
METHODS
Full-thickness skin biopsies were surgically obtained from the forearms of 12 adult patients with SSc of recent onset. Fibroblasts were isolated and cultured in monolayers and protein and RNA extracted. HOX transcript antisense RNA (HOTAIR) was expressed in healthy dermal fibroblasts by lentiviral induction employing a vector containing the specific sequence. Gamma secretase inhibitors were employed to block Notch signalling. Enhancer of zeste 2 (EZH2) was blocked with GSK126 inhibitor.
RESULTS
SSc myofibroblasts in vitro and SSc skin biopsies in vivo display high levels of HOTAIR, a scaffold long non-coding RNA known to direct the histone methyltransferase EZH2 to induce H3K27me3 in specific target genes. Overexpression of HOTAIR in dermal fibroblasts induced EZH2-dependent increase in collagen and α-SMA expression in vitro, as well as repression of miRNA-34A expression and consequent NOTCH pathway activation. Consistent with these findings, we show that SSc dermal fibroblast display decreased levels of miRNA-34a in vitro. Further, EZH2 inhibition rescued miRNA-34a levels and mitigated the profibrotic phenotype of both SSc and HOTAIR overexpressing fibroblasts in vitro.
CONCLUSIONS
Our data indicate that the EZH2-dependent epigenetic phenotype of myofibroblasts is driven by HOTAIR and is linked to miRNA-34a repression-dependent activation of NOTCH signalling.
背景
系统性硬化症(SSc)的特征是自身免疫激活、皮肤和内脏组织及血管纤维化。组织纤维化由成肌纤维细胞驱动,已知其在体外维持其表型,这与组蛋白 3 赖氨酸 27 三甲基化(H3K27me3)的表观遗传驱动有关。
方法
从 12 名近期发病的成人 SSc 患者的前臂手术获得全层皮肤活检。分离和培养成纤维细胞,并提取蛋白质和 RNA。通过含有特定序列的载体,使用慢病毒诱导在健康真皮成纤维细胞中表达 HOX 转录反义 RNA(HOTAIR)。使用γ分泌酶抑制剂阻断 Notch 信号。用 GSK126 抑制剂阻断增强子的锌指蛋白 2(EZH2)。
结果
体外 SSc 成肌纤维细胞和体内 SSc 皮肤活检显示高水平的 HOTAIR,这是一种已知的支架长非编码 RNA,可指导组蛋白甲基转移酶 EZH2 诱导特定靶基因中的 H3K27me3。真皮成纤维细胞中 HOTAIR 的过表达诱导 EZH2 依赖性增加胶原蛋白和α-SMA 的表达,以及 miRNA-34A 表达的抑制和随后的 NOTCH 途径激活。与这些发现一致,我们表明 SSc 真皮成纤维细胞在体外显示 miRNA-34a 水平降低。此外,EZH2 抑制可恢复 miRNA-34a 水平,并减轻体外 SSc 和 HOTAIR 过表达成纤维细胞的促纤维化表型。
结论
我们的数据表明,成肌纤维细胞的 EZH2 依赖性表观遗传表型由 HOTAIR 驱动,并与 miRNA-34a 抑制依赖性 NOTCH 信号激活有关。