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整合素β样蛋白1受DNA甲基化调控,在心力衰竭患者中表达增加。

Integrin beta-like 1 is regulated by DNA methylation and increased in heart failure patients.

作者信息

Kerrigan Lauren, Edgar Kevin, Russell-Hallinan Adam, Cappa Oisin, Glezeva Nadezhda, Galan-Arriola Carlos, Oliver Eduardo, Ibanez Borja, Baugh John, Collier Patrick, Ledwidge Mark, McDonald Ken, Simpson David, Das Sudipto, Grieve David J, Watson Chris J

机构信息

Wellcome-Wolfson Institute for Experimental Medicine, Queen's University Belfast, Belfast, UK.

UCD Conway Institute and Research and Innovation Programme for Chronic Disease, School of Medicine, University College Dublin, Dublin, Ireland.

出版信息

ESC Heart Fail. 2025 Feb;12(1):150-165. doi: 10.1002/ehf2.15050. Epub 2024 Sep 5.

Abstract

AIMS

Dynamic alterations in cardiac DNA methylation have been implicated in the development of heart failure (HF) with evidence of ischaemic heart disease (IHD); however, there is limited research into cell specific, DNA methylation sensitive genes that are affected by dysregulated DNA methylation patterns. In this study, we aimed to identify DNA methylation sensitive genes in the ischaemic heart and elucidate their role in cardiac fibrosis.

METHODS

A multi-omics integrative analysis was carried out on RNA sequencing and methylation sequencing on HF with IHD (n = 9) versus non-failing (n = 9) left ventricular tissue, which identified Integrin beta-like 1 (ITGBL1) as a gene of interest. Expression of Itgbl1 was assessed in three animal models of HF; an ischaemia-reperfusion pig model, a myocardial infarction mouse model and an angiotensin-II infused mouse model. Single nuclei RNA sequencing was carried out on heart tissue from angiotensin-II infused mice to establish the expression profile of Itgbl1 across cardiac cell populations. Subsequent in vitro analyses were conducted to elucidate a role for ITGBL1 in human cardiac fibroblasts. DNA pyrosequencing was applied to assess ITGBL1 CpG methylation status in genomic DNA from human cardiac tissue and stimulated cardiac fibroblasts.

RESULTS

ITGBL1 was >2-fold up-regulated (FDR adj P = 0.03) and >10-fold hypomethylated (FDR adj P = 0.01) in human HF with IHD left ventricular tissue compared with non-failing controls. Expression of Itgbl1 was up-regulated in three isolated animal models of HF and showed conserved correlation between increased Itgbl1 and diastolic dysfunction. Single nuclei RNA sequencing highlighted that Itgbl1 is primarily expressed in cardiac fibroblasts, while functional studies elucidated a role for ITGBL1 in cardiac fibroblast migration, evident in 50% reduced 24 h fibroblast wound closure occurring subsequent to siRNA-targeted ITGBL1 knockdown. Lastly, evidence provided from DNA pyrosequencing supports the theory that differential expression of ITGBL1 is caused by DNA hypomethylation.

CONCLUSIONS

ITGBL1 is a gene that is mainly expressed in fibroblasts, plays an important role in cardiac fibroblast migration, and whose expression is significantly increased in the failing heart. The mechanism by which increased ITGBL1 occurs is through DNA hypomethylation.

摘要

目的

心脏DNA甲基化的动态变化与缺血性心脏病(IHD)所致心力衰竭(HF)的发生有关;然而,对于受DNA甲基化模式失调影响的细胞特异性、DNA甲基化敏感基因的研究有限。在本研究中,我们旨在鉴定缺血心脏中的DNA甲基化敏感基因,并阐明它们在心脏纤维化中的作用。

方法

对伴有IHD的HF(n = 9)与非衰竭(n = 9)左心室组织进行RNA测序和甲基化测序的多组学综合分析,确定整合素β样1(ITGBL1)为感兴趣的基因。在三种HF动物模型中评估Itgbl1的表达;缺血再灌注猪模型、心肌梗死小鼠模型和血管紧张素II灌注小鼠模型。对血管紧张素II灌注小鼠的心脏组织进行单核RNA测序,以建立Itgbl1在心脏细胞群体中的表达谱。随后进行体外分析,以阐明ITGBL1在人心脏成纤维细胞中的作用。应用DNA焦磷酸测序评估人心脏组织和受刺激的心脏成纤维细胞基因组DNA中ITGBL1 CpG甲基化状态。

结果

与非衰竭对照组相比,伴有IHD的人HF左心室组织中ITGBL1上调>2倍(FDR校正P = 0.03),甲基化降低>10倍(FDR校正P = 0.01)。Itgbl1在三种孤立的HF动物模型中表达上调,并且Itgbl1增加与舒张功能障碍之间存在保守的相关性。单核RNA测序突出显示Itgbl1主要在心脏成纤维细胞中表达,而功能研究阐明了ITGBL1在心脏成纤维细胞迁移中的作用,在siRNA靶向ITGBL1敲低后24小时成纤维细胞伤口闭合减少50%中明显可见。最后,DNA焦磷酸测序提供的证据支持ITGBL1差异表达是由DNA低甲基化引起的理论。

结论

ITGBL1是一个主要在成纤维细胞中表达的基因,在心脏成纤维细胞迁移中起重要作用,其表达在衰竭心脏中显著增加。ITGBL1增加的机制是通过DNA低甲基化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/327f/11769624/6f55fa0475d0/EHF2-12-150-g001.jpg

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