[DNA Methylation Profiling in Aneurysm and Comorbid Atherosclerosis of the Ascending Aorta].

I A Goncharova, A A Zarubin, S A Shipulina, Iu A Koroleva, D S Panfilov, B N Kozlov, M S Nazarenko
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引用次数: 0

Abstract

Atherosclerosis and aneurysm of the aorta are relatively common pathological conditions that remain asymptomatic for a long period of time and have life-threatening and disabling complications. DNA methylation profiling in several regions (a dilated area, a nondilated area, and an atherosclerotic plaque) of the ascending aorta was carried out in patients with aortic aneurysm. DNA methylation was analyzed by reduced representation bisulfite sequencing (RRBS). Differences in methylation level between dilated and normal aortic tissues were detected for two CpG sites of the NR2F1-AS1 gene (|Δβ| > 0.2 and FDR < 0.05). In total, 586/480 differentially methylated CpG sites (DMSs) were identified by comparing atherosclerotic plaque samples with dilated/normal aortic tissues; 323/234 of the DMSs were hypermethylated and 263/246 were hypomethylated in atherosclerotic plaques. Most DMSs were in introns and intergenic regions; 88.2% of the DMSs were in the binding sites of transcription factors, among which ZNf263, ZFP148, PATZ1, NRF1, TCF12, and EGR1 play a role in the pathogenesis of atherosclerosis of various arteries and ELK1, ETS1, and KLF15 play a role in aortic aneurysms. Sixteen DMSs were found in the regions of the genes CMIP, RPH3AL, XRCC1, GATA5, EXD3, KCNC2, HIVEP3, ADCY9, CDCP2, FOLR1, WT1, MGMT, GAS2, CA1, PRSS16, and ANK3, whose protein products are involved in both aortic dissection and atherosclerosis in various arterial circulation regions. The protein products of the genes are involved in a wide range of biological processes, including mesenchyme development (GO:0060485; FOLR1, WT1, GATA5, HIVEP3, and KCNC2) and positive regulation of DNA metabolic processes (GO:0051054; MGMT, WT1, and XRCC1).

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[升主动脉动脉瘤和合并动脉粥样硬化的DNA甲基化分析]。
动脉粥样硬化和主动脉动脉瘤是相对常见的病理状况,长期无症状,有危及生命和致残的并发症。对主动脉瘤患者升主动脉的几个区域(扩张区、非扩张区和动脉粥样硬化斑块)进行DNA甲基化分析。采用还原亚硫酸氢盐测序(RRBS)分析DNA甲基化。在扩张和正常主动脉组织中检测到NR2F1-AS1基因两个CpG位点的甲基化水平差异(|Δβ| > 0.2和FDR < 0.05)。通过比较动脉粥样硬化斑块样本与扩张/正常主动脉组织,共鉴定出586/480个差异甲基化的CpG位点(dms);在动脉粥样硬化斑块中,323/234个dms高甲基化,263/246个低甲基化。大多数dms位于内含子和基因间区;88.2%的dms位于转录因子的结合位点,其中ZNf263、ZFP148、PATZ1、NRF1、TCF12和EGR1在各种动脉粥样硬化的发病机制中起作用,ELK1、ETS1和KLF15在主动脉瘤中起作用。在CMIP、RPH3AL、XRCC1、GATA5、EXD3、KCNC2、HIVEP3、ADCY9、CDCP2、FOLR1、WT1、MGMT、GAS2、CA1、PRSS16和ANK3基因区域发现了16个dms,这些基因的蛋白产物参与了主动脉夹层和动脉粥样硬化的各个动脉循环区域。这些基因的蛋白产物参与了广泛的生物过程,包括间质发育(GO:0060485;FOLR1, WT1, GATA5, HIVEP3和KCNC2)和DNA代谢过程的正调控(GO:0051054;MGMT、WT1和XRCC1)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Molekulyarnaya Biologiya
Molekulyarnaya Biologiya Medicine-Medicine (all)
CiteScore
0.70
自引率
0.00%
发文量
131
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