癌症研究
组蛋白甲基化
组蛋白H3
纤维化
组蛋白
EZH2型
生物
分子生物学
肌成纤维细胞
DNA甲基化
表观遗传学
成纤维细胞
细胞生物学
医学
体外
基因表达
病理
生物化学
基因
作者
Marlene Krämer,Clara Dees,Jingang Huang,I Schlottmann,Katrin Palumbo‐Zerr,Pawel Zerr,Kolja Gelse,Christian Beyer,Alfiya Distler,Víctor E. Márquez,Oliver Distler,Georg Schett,Jörg H. W. Distler
标识
DOI:10.1136/annrheumdis-2012-201615
摘要
Objectives Epigenetic modifications such as DNA methylation and histone acetylation have been implicated in the pathogenesis of systemic sclerosis. However, histone methylation has not been investigated so far. We therefore aimed to evaluate the role of the trimethylation of histone H3 on lysine 27 (H3K27me3) on fibroblast activation and fibrosis. Methods H3K27me3 was inhibited by 3-deazaneplanocin A (DZNep) in cultured fibroblasts and in two murine models of dermal fibrosis. Fibrosis was analysed by assessment of the dermal thickening, determination of the hydroxyproline content and by quantification of the numbers of myofibroblasts. The expression of fos-related antigen 2 (fra-2) was assessed by real-time PCR, western blot and immunohistochemistry and modulated by siRNA. Results Inhibition of H3K27me3 stimulated the release of collagen in cultured fibroblasts in a time and dose-dependent manner. Treatment with DZNep exacerbated fibrosis induced by bleomycin or by overexpression of a constitutively active transforming growth factor β receptor type I. Moreover, treatment with DZNep alone was sufficient to induce fibrosis. Inhibition of H3K27me3 induced the expression of the profibrotic transcription factor fra-2 in vitro and in vivo. Knockdown of fra-2 completely prevented the profibrotic effects of DZNep. Conclusions These data demonstrate a novel role of H3 Lys27 histone methylation in fibrosis. In contrast to other epigenetic modifications such as DNA methylation and histone acetylation, H3 Lys27 histone methylation acts as a negative regulator of fibroblast activation in vitro and in vivo by repressing the expression of fra-2.
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