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系统性硬化症 CD4+T 细胞的表观基因组学和转录组学研究揭示了疾病相关易感基因座介导的关键炎症途径的长程失调。

Epigenomics and transcriptomics of systemic sclerosis CD4+ T cells reveal long-range dysregulation of key inflammatory pathways mediated by disease-associated susceptibility loci.

机构信息

Epigenetics and Immune Disease Group, Josep Carreras Research Institute (IJC), 08916, Badalona, Barcelona, Spain.

Instituto de Parasitología y Biomedicina López-Neyra, Consejo Superior de Investigaciones Científicas (IPBLN-CSIC), Granada, Spain.

出版信息

Genome Med. 2020 Sep 25;12(1):81. doi: 10.1186/s13073-020-00779-6.

Abstract

BACKGROUND

Systemic sclerosis (SSc) is a genetically complex autoimmune disease mediated by the interplay between genetic and epigenetic factors in a multitude of immune cells, with CD4+ T lymphocytes as one of the principle drivers of pathogenesis.

METHODS

DNA samples exacted from CD4+ T cells of 48 SSc patients and 16 healthy controls were hybridized on MethylationEPIC BeadChip array. In parallel, gene expression was interrogated by hybridizing total RNA on Clariom™ S array. Downstream bioinformatics analyses were performed to identify correlating differentially methylated CpG positions (DMPs) and differentially expressed genes (DEGs), which were then confirmed utilizing previously published promoter capture Hi-C (PCHi-C) data.

RESULTS

We identified 9112 and 3929 DMPs and DEGs, respectively. These DMPs and DEGs are enriched in functional categories related to inflammation and T cell biology. Furthermore, correlation analysis identified 17,500 possible DMP-DEG interaction pairs within a window of 5 Mb, and utilizing PCHi-C data, we observed that 212 CD4+ T cell-specific pairs of DMP-DEG also formed part of three-dimensional promoter-enhancer networks, potentially involving CTCF. Finally, combining PCHi-C data with SSc GWAS data, we identified four important SSc-associated susceptibility loci, TNIP1 (rs3792783), GSDMB (rs9303277), IL12RB1 (rs2305743), and CSK (rs1378942), that could potentially interact with DMP-DEG pairs cg17239269-ANXA6, cg19458020-CCR7, cg10808810-JUND, and cg11062629-ULK3, respectively.

CONCLUSION

Our study unveils a potential link between genetic, epigenetic, and transcriptional deregulation in CD4+ T cells of SSc patients, providing a novel integrated view of molecular components driving SSc pathogenesis.

摘要

背景

系统性硬化症(SSc)是一种遗传复杂的自身免疫性疾病,由多种免疫细胞中的遗传和表观遗传因素相互作用介导,其中 CD4+T 淋巴细胞是发病机制的主要驱动因素之一。

方法

从 48 名 SSc 患者和 16 名健康对照者的 CD4+T 细胞中提取 DNA 样本,在 MethylationEPIC BeadChip 芯片上杂交。同时,通过在 Clariom™S 芯片上杂交总 RNA 来检测基因表达。然后进行下游生物信息学分析,以识别相关的差异甲基化 CpG 位置(DMP)和差异表达基因(DEG),并利用先前发表的启动子捕获 Hi-C(PCHi-C)数据进行验证。

结果

我们分别鉴定了 9112 个和 3929 个 DMP 和 DEG。这些 DMP 和 DEG 在与炎症和 T 细胞生物学相关的功能类别中富集。此外,相关性分析在 5 Mb 窗口内识别了 17500 个可能的 DMP-DEG 相互作用对,并且利用 PCHi-C 数据,我们观察到 212 个 CD4+T 细胞特异性的 DMP-DEG 对也形成了三维启动子-增强子网络的一部分,可能涉及 CTCF。最后,将 PCHi-C 数据与 SSc GWAS 数据相结合,我们鉴定了四个重要的 SSc 相关易感性位点,TNIP1(rs3792783)、GSDMB(rs9303277)、IL12RB1(rs2305743)和 CSK(rs1378942),它们可能分别与 DMP-DEG 对 cg17239269-ANXA6、cg19458020-CCR7、cg10808810-JUND 和 cg11062629-ULK3 相互作用。

结论

我们的研究揭示了 SSc 患者 CD4+T 细胞中遗传、表观遗传和转录失调之间的潜在联系,为驱动 SSc 发病机制的分子成分提供了新的综合视角。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f3f4/7519528/0c9b1dab38d9/13073_2020_779_Fig1_HTML.jpg

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