IFNγ激活心脏血管内皮的免疫样调节网络

Timothy D. Arthur , Isaac N. Joshua , Jennifer P. Nguyen , Agnieszka D'Antonio-Chronowska , Matteo D'Antonio , Kelly A. Frazer
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引用次数: 0

摘要

在心脏疾病中,对促炎细胞因子反应的调节机制尚不清楚。在这里,我们使用ipsc衍生的心血管祖细胞(CVPCs)来模拟人类心脏组织对干扰素γ (IFNγ)的反应。我们为四个经IFNγ处理的CVPCs生成RNA-seq和ATAC-seq,并将其与配对的未处理对照进行比较。治疗后的转录差异表明IFNγ启动了先天免疫细胞样反应,将CVPC转录组向冠状动脉和主动脉转移,并刺激内皮细胞特异性基因的表达。对可接近染色质的分析表明,IFNγ是一种有效的染色质重塑剂,并建立了IRF-STAT免疫细胞样调节网络。最后,我们发现8种常见心脏病的11种GWAS风险变异重叠ifn γ-上调的ATAC-seq峰。我们的研究结果揭示了ifn γ诱导的人类心脏组织中免疫样调节网络的激活以及该途径中的调节元件在常见心脏病中发挥的潜在作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

IFNγ activates an immune-like regulatory network in the cardiac vascular endothelium

IFNγ activates an immune-like regulatory network in the cardiac vascular endothelium
The regulatory mechanisms underlying the response to pro-inflammatory cytokines in cardiac diseases are poorly understood. Here, we use iPSC-derived cardiovascular progenitor cells (CVPCs) to model the response to interferon gamma (IFNγ) in human cardiac tissue. We generate RNA-seq and ATAC-seq for four CVPCs that were treated with IFNγ and compare them with paired untreated controls. Transcriptional differences after treatment show that IFNγ initiates an innate immune cell-like response, shifts the CVPC transcriptome toward coronary artery and aorta profiles, and stimulates expression of endothelial cell-specific genes. Analysis of the accessible chromatin shows that IFNγ is a potent chromatin remodeler and establishes an IRF-STAT immune-cell like regulatory network. Finally, we show that 11 GWAS risk variants for 8 common cardiac diseases overlap IFNγ-upregulated ATAC-seq peaks. Our findings reveal insights into IFNγ-induced activation of an immune-like regulatory network in human cardiac tissue and the potential role that regulatory elements in this pathway play in common cardiac diseases.
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来源期刊
Journal of molecular and cellular cardiology plus
Journal of molecular and cellular cardiology plus Cardiology and Cardiovascular Medicine
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