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LBH 基因转录调控:增强子风险等位基因与类风湿关节炎中 DNA 甲基化的相互作用。

LBH Gene Transcription Regulation by the Interplay of an Enhancer Risk Allele and DNA Methylation in Rheumatoid Arthritis.

机构信息

University of California at San Diego, La Jolla.

Anna-Karin H. Ekwall, MD, PhD: The Sahlgrenska Academy, University of Gothenburg, Gothenburg, Sweden.

出版信息

Arthritis Rheumatol. 2016 Nov;68(11):2637-2645. doi: 10.1002/art.39746.

Abstract

OBJECTIVE

To identify nonobvious therapeutic targets for rheumatoid arthritis (RA), we performed an integrative analysis incorporating multiple "omics" data and the Encyclopedia of DNA Elements (ENCODE) database for potential regulatory regions. This analysis identified the limb bud and heart development (LBH) gene, which has risk alleles associated with RA/celiac disease and lupus, and can regulate cell proliferation in RA. We identified a novel LBH transcription enhancer with an RA risk allele (rs906868 G [Ref]/T) 6 kb upstream of the LBH gene with a differentially methylated locus. The confluence of 3 regulatory elements, rs906868, an RA differentially methylated locus, and a putative enhancer, led us to investigate their effects on LBH regulation in fibroblast-like synoviocytes (FLS).

METHODS

We cloned the 1.4-kb putative enhancer with either the rs906868 Ref allele or single-nucleotide polymorphism (SNP) variant into reporter constructs. The constructs were methylated in vitro and transfected into cultured FLS by nucleofection.

RESULTS

We found that both variants increased transcription, thereby confirming the region's enhancer function. Unexpectedly, the transcriptional activity of the Ref risk allele was significantly lower than that of the SNP variant and is consistent with low LBH levels as a risk factor for aggressive FLS behavior. Using RA FLS lines with a homozygous Ref or SNP allele, we confirmed that homozygous Ref lines expressed lower LBH messenger RNA levels than did the SNP lines. Methylation significantly reduced enhancer activity for both alleles, indicating that enhancer function is dependent on its methylation status.

CONCLUSION

This study shows how the interplay between genetics and epigenetics can affect expression of LBH in RA.

摘要

目的

为了确定类风湿关节炎(RA)的非明显治疗靶点,我们进行了综合分析,整合了多种“组学”数据和 DNA 元件百科全书(ENCODE)数据库,以寻找潜在的调控区域。该分析确定了肢体芽和心脏发育(LBH)基因,该基因具有与 RA/乳糜泻和狼疮相关的风险等位基因,并且可以调节 RA 中的细胞增殖。我们确定了一个新的 LBH 转录增强子,其 RA 风险等位基因(rs906868G[Ref]/T)位于 LBH 基因上游 6kb 处,有一个差异甲基化的位点。三个调节元件(rs906868、RA 差异甲基化位点和一个假定的增强子)的汇聚促使我们研究它们对成纤维样滑膜细胞(FLS)中 LBH 调节的影响。

方法

我们将 1.4kb 大小的假定增强子克隆入报告基因构建体中,该增强子带有 rs906868Ref 等位基因或单核苷酸多态性(SNP)变体。构建体在体外进行甲基化,并通过核转染转染入培养的 FLS 中。

结果

我们发现这两种变体都能增加转录,从而证实了该区域的增强子功能。出乎意料的是,Ref 风险等位基因的转录活性明显低于 SNP 变体,这与 LBH 水平低作为侵袭性 FLS 行为的风险因素是一致的。使用具有纯合 Ref 或 SNP 等位基因的 RA FLS 系,我们证实纯合 Ref 系的 LBH 信使 RNA 水平明显低于 SNP 系。甲基化显著降低了两个等位基因的增强子活性,表明增强子功能依赖于其甲基化状态。

结论

这项研究表明,遗传学和表观遗传学之间的相互作用如何影响 RA 中 LBH 的表达。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0bd6/5083131/f4f1635422fe/nihms-787237-f0001.jpg

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