通过直接杂交分析家族性高胆固醇血症中不同表达的 MicroRNAs

IF 5.9 3区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY Non-coding RNA Research Pub Date : 2024-03-08 DOI:10.1016/j.ncrna.2024.02.017
Erika Cione , Maryam Mahjoubin-Tehran , Tiziana Bacchetti , Maciej Banach , Gianna Ferretti , Amirhossein Sahebkar
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引用次数: 0

摘要

背景同卵家族性高胆固醇血症(HoFH)患者在其生命的头十年会出现严重的临床问题,而异卵家族性高胆固醇血症(HeFH)患者通常不会出现这种问题。本研究利用各种生物信息学工具分析微阵列数据,找出与 FH 及其严重程度相关的关键 miRNA 及其靶基因。从直接杂交微阵列数据中发现健康、HeFH 和 HoFH 三组受试者血清中差异表达的 miRNA。差异表达的 miRNA 是根据折叠变化对数(LFC)<-0.5 或 >0.5,以及 p <0.05来确定的。然后,我们对其靶基因进行了硅学评估。通过 Cytoscape 对基因本体(GO)进行了富集。结果我们发现,在 FH 组和健康组中,循环中 hsa-miR-604、hsa-miR-652-5p 和 hsa-miR-4451 的表达均增加,而 hsa-miR-3140-3p、hsa-miR-550a-5p 和 hsa-miR-363-3p 的表达均减少。与健康受试者相比,在 HeFH 组中检测到更高水平的 hsa-miR-1183、hsa-miR-1185-1-3p、hsa-miR-122-5p、hsa-miR-19a-3p、hsa-miR-345-3p 和 hsa-miR-34c-5p。大多数上调的 miRNAs 主要影响与心肌纤毛生成、胆固醇合成、载脂蛋白 B 的 RNA 编辑有关的基因,并与低密度脂蛋白胆固醇水平相关。相反,下调的 miRNA 主要影响与冠心病血浆生物标志物、脂质代谢、细胞粘附和迁移、2 型糖尿病遗传预测因子和胆固醇代谢有关的基因。重要基因主要富集在有关生物调控、细胞内核酸结合和 TGF-β 信号转导的 KEGG 通路的 GO 中。因此,能反映 HeFH 和 HoFH 发病机制的 miRNAs 标志性基因可能对心血管事件的发生有预测作用。
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Profiling of differentially expressed MicroRNAs in familial hypercholesterolemia via direct hybridization

Background

Individuals with homozygous familial hypercholesterolemia (HoFH) have a severe clinical problem in their first decade of life, which is not usually present in heterozygous FH (HeFH) individuals. For this latter group of patients, FH diagnosis is mostly severely delayed with a significant increase in the risk of angina, myocardial infarction, peripheral artery disease, stroke, and cardiovascular and all-cause mortality.

Methods

This study used various bioinformatics tools to analyze microarray data and identify critical miRNAs and their target genes associated with FH and its severity. Differentially expressed serum miRNAs from direct hybridization microarray data in three groups of subjects: healthy, HeFH, and HoFH. The differential expressed miRNAs were determined according to a log of fold-change (LFC) <-0.5 or >0.5 and of p < 0.05. Then, we assessed their target genes in silico. Gene ontology (GO) enrichment was applied by Cytoscape. The protein-protein interaction and co-expression network were analyzed by the STRING and GeneMANIA plugins of Cytoscape, respectively.

Results

We identified increased expression of circulating hsa-miR-604, hsa-miR-652-5p, and hsa-miR-4451 as well as reduced expression of hsa-miR-3140-3p, hsa-miR-550a-5p, and hsa-miR-363-3p in both group of FH vs. healthy subjects. Higher levels of hsa-miR-1183, hsa-miR-1185-1-3p, hsa-miR-122-5p, hsa-miR-19a-3p, hsa-miR-345-3p, and hsa-miR-34c-5p were detected in HeFH in respect to HoFH when compared to healthy subjects. Most upregulated miRNAs mainly affected gene related to cardiac myofibrillogenesis, cholesterol synthesis, RNA editing for apolipoprotein B, and associated with LDL-cholesterol levels. In contrast, down-regulated miRNAs mainly affected gene related to plasma biomarker for coronary artery disease, lipids metabolism, cell adhesion and migration, genetic predictors of type 2 diabetes and cholesterol metabolism. The essential genes were primarily enriched in GO regarding biological regulation, intracellular nucleic acid binding, and the KEGG pathway of TGF-β signaling.

Conclusions

The case-control nature of this study precluded the possibility of assessing the predictive role of the identified differentially expressed miRNAs for cardiovascular events. Therefore, the signature of miRNAs reflecting the pathogenesis of both HeFH and HoFH.

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来源期刊
Non-coding RNA Research
Non-coding RNA Research Medicine-Biochemistry (medical)
CiteScore
7.70
自引率
6.00%
发文量
39
审稿时长
49 days
期刊介绍: Non-coding RNA Research aims to publish high quality research and review articles on the mechanistic role of non-coding RNAs in all human diseases. This interdisciplinary journal will welcome research dealing with all aspects of non-coding RNAs-their biogenesis, regulation and role in disease progression. The focus of this journal will be to publish translational studies as well as well-designed basic studies with translational and clinical implications. The non-coding RNAs of particular interest will be microRNAs (miRNAs), small interfering RNAs (siRNAs), small nucleolar RNAs (snoRNAs), U-RNAs/small nuclear RNAs (snRNAs), exosomal/extracellular RNAs (exRNAs), Piwi-interacting RNAs (piRNAs) and long non-coding RNAs. Topics of interest will include, but not limited to: -Regulation of non-coding RNAs -Targets and regulatory functions of non-coding RNAs -Epigenetics and non-coding RNAs -Biological functions of non-coding RNAs -Non-coding RNAs as biomarkers -Non-coding RNA-based therapeutics -Prognostic value of non-coding RNAs -Pharmacological studies involving non-coding RNAs -Population based and epidemiological studies -Gene expression / proteomics / computational / pathway analysis-based studies on non-coding RNAs with functional validation -Novel strategies to manipulate non-coding RNAs expression and function -Clinical studies on evaluation of non-coding RNAs The journal will strive to disseminate cutting edge research, showcasing the ever-evolving importance of non-coding RNAs in modern day research and medicine.
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