The key mediators involved in myocardial endoplasmic reticulum stress induced by ischaemia reperfusion injury in rats

Pub Date : 2023-04-27 DOI:10.1177/1721727x231173161
Jiayue Qing, Hong-mei Zhou, Liye Hu, Zhi-peng Zhu
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Abstract

Objective: Endoplasmic reticulum stress (ERS) occurs throughout the pathological process of myocardial ischaemia reperfusion injury (MIRI); however, the key mediators involved in the biological processes of ERS or that can influence the outcomes of ischaemia reperfusion injury (IRI) are unclear. To identify the differentially expressed genes (DEGs) encoding promising mediators in rat hearts in the context of MIRI, gene profiles were mined through transcriptome analysis. Methods: By searching the Gene Expression Omnibus (GEO) database, a suitable GEO dataset was identified in the context of MIRI with 24 h reperfusion after 45 min ischaemia in rats. DEGs were extracted and analysed with R studio, and the properties of those DEGs were elucidated by utilizing protein‒protein-interaction (PPI), Cytoscape, GO and KEGG bioinformatics techniques. The potential hub genes in the first cluster of the DEG dataset were retrieved and verified by basal experiments. Results: By searching the target dataset GSE122020, 1647 mRNAs, including 790 upregulated and 857 downregulated genes, were found in the datasets with criteria of | fold change ≥ 1.2 and p value <0.05. The upregulated and downregulated genes were primarily involved in the “positive regulation of cytokine production”, “regulation of inflammatory response” and “response to pheromone” biological processes. Most of them were mainly correlated with the MAPK, Ras and calcium signalling pathways. In particular, 15 DEGs were found to be involved in the ERS signalling pathways, including Bfar, Itpr1, Srpx, Hspa1b, Usp25, Jun, Casp12, Eif2ak2, Casp4, Trim25, Ifng, Atf3, Hspa1a, Ppp1r15a, and Creb3. Through analysis with the MCODE plugin in Cytoscape, six genes, Atf3, Ppp1r15a, Casp12, Eif2ak2, Ifng, and Hspa1a, were identified as hub genes by the K-means algorithm from Cluster 1. In the in vivo MIRI model, the six genes mentioned above exhibited significant mRNA overexpression in the left anterior descending coronary artery ligation (LAD) model in rats. Conclusions: Altogether, the present study identified six potential DEGs involved in ERS induced by MIRI, which could be therapeutic targets in dealing with IRI-related ERS.
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缺血再灌注损伤引起大鼠心肌内质网应激的关键介质
目的:内质网应激(Endoplasmic reticulum stress, ERS)发生于心肌缺血再灌注损伤(MIRI)的整个病理过程;然而,参与内质网生物学过程或影响缺血再灌注损伤(IRI)结果的关键介质尚不清楚。为了鉴定MIRI背景下大鼠心脏中编码有希望介质的差异表达基因(DEGs),通过转录组分析挖掘了基因谱。方法:通过检索Gene Expression Omnibus (GEO)数据库,在大鼠缺血45 min后24 h再灌注的MIRI背景下找到合适的GEO数据集。利用R studio提取和分析deg,并利用蛋白-蛋白相互作用(PPI)、Cytoscape、GO和KEGG生物信息学技术阐明这些deg的性质。对DEG数据集第一簇的潜在枢纽基因进行检索,并通过基础实验进行验证。结果:通过搜索目标数据集GSE122020,在数据集中共发现mrna 1647个,其中上调基因790个,下调基因857个,标准为|倍变化≥1.2,p值<0.05。上调和下调的基因主要参与“细胞因子产生的正调节”、“炎症反应的调节”和“信息素反应”的生物过程。其中大部分主要与MAPK、Ras和钙信号通路相关。特别是,有15个deg被发现参与ERS信号通路,包括Bfar、Itpr1、Srpx、Hspa1b、Usp25、Jun、Casp12、Eif2ak2、Casp4、Trim25、Ifng、Atf3、Hspa1a、Ppp1r15a和Creb3。通过Cytoscape中的MCODE插件分析,通过K-means算法从Cluster 1中鉴定出Atf3、Ppp1r15a、Casp12、Eif2ak2、Ifng和Hspa1a 6个基因为hub基因。在体内MIRI模型中,上述6个基因在大鼠左冠状动脉前降支结扎(LAD)模型中均表现出显著的mRNA过表达。结论:本研究确定了MIRI诱导的6种可能参与ERS的deg,这些deg可能是处理iri相关ERS的治疗靶点。
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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