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基因芯片分析揭示呼吸机诱导性肺损伤小鼠中环状RNA表达的变化及分子机制。

Microarray Analysis Reveals the Changes in Circular RNA Expression and Molecular Mechanisms in Mice With Ventilator-Induced Lung Injury.

作者信息

Chen Shengsong, Xia Jingen, Zhan Qingyuan, Zhang Yi

机构信息

Department of Pulmonary and Critical Care Medicine, China-Japan Friendship Hospital, Center of Respiratory Medicine, Beijing, China.

Graduate School of Peking Union Medical College, Chinese Academy of Medical Sciences, Beijing, China.

出版信息

Front Physiol. 2022 Mar 10;13:838196. doi: 10.3389/fphys.2022.838196. eCollection 2022.

Abstract

Circular RNA (circRNA) expression profiles in lung tissues from mice with and without ventilator-induced lung injury (VILI) were analyzed using high-throughput sequencing and bioinformatics to clarify their potential role in VILI pathogenesis and provide valuable molecular markers for VILI diagnosis and treatment. A VILI mouse model was established using high-tidal volume ventilation, and lung tissue was stained with HE and TUNEL. The present study used high-throughput sequencing technology to analyze the expression profile of circRNAs in the lung tissue of mice with and without VILI. Bioinformatics was used to analyze the enrichment of differentially expressed circRNAs using Gene Ontology and KEGG to predict function. Among the top 10 circRNAs with significant differential expression, we used real-time quantitative polymerase chain reaction technology (qRT-PCR) to verify the accuracy of the high-throughput sequencing results and constructed the corresponding circRNA-miRNA-mRNA-specific binding network map using software prediction. The most upregulated circRNAs were novel_circ_0000899 and novel_circ_0014815, and the most downregulated circRNAs were novel_circ_0015069. A total of 14,347 circRNAs were detected using high-throughput sequencing. Compared to the control group, 285 circRNAs were abnormally and significantly expressed in the lung tissues of VILI mice (|log2(FC)| > 1,  < 0.05). A total of 171 circRNAs were significantly upregulated, and 114 circRNAs were significantly downregulated. Gene ontology analyses indicated that the differentially expressed circRNAs were involved in multiple biological functions, such as regulation of metabolic processes, protein phosphorylation, and chromatin organization. KEGG pathway analyses revealed that the Ras signaling pathway, rap1 signaling pathway, PI3K - Akt signaling pathway, and ECM receiver interaction were related to the differentially expressed circRNAs. The qRT-PCR verification results were generally consistent with the circRNA expression trends of the high-throughput sequencing data. The circRNA-miRNA-mRNA interaction network suggested that miRNAs and mRNAs related to circRNAs played a key role in VILI. Differentially expressed circRNAs were identified in the tissues of VILI mice using high-throughput sequencing combined with bioinformatics analysis, and the results lay a foundation for further study of the mechanism of circRNAs in the occurrence and development of VILI.

摘要

使用高通量测序和生物信息学分析了有和没有呼吸机诱导的肺损伤(VILI)的小鼠肺组织中的环状RNA(circRNA)表达谱,以阐明它们在VILI发病机制中的潜在作用,并为VILI的诊断和治疗提供有价值的分子标志物。使用高潮气量通气建立VILI小鼠模型,并用HE和TUNEL对肺组织进行染色。本研究使用高通量测序技术分析有和没有VILI的小鼠肺组织中circRNAs的表达谱。利用生物信息学通过基因本体论和KEGG分析差异表达的circRNAs的富集情况以预测其功能。在差异表达最显著的前10个circRNAs中,我们使用实时定量聚合酶链反应技术(qRT-PCR)验证高通量测序结果的准确性,并使用软件预测构建相应的circRNA-miRNA-mRNA特异性结合网络图。上调最显著的circRNAs是novel_circ_0000899和novel_circ_0014815,下调最显著的circRNAs是novel_circ_0015069。使用高通量测序共检测到14,347个circRNAs。与对照组相比,285个circRNAs在VILI小鼠的肺组织中异常且显著表达(|log2(FC)| > 1, < 0.05)。其中171个circRNAs显著上调,114个circRNAs显著下调。基因本体分析表明,差异表达的circRNAs参与多种生物学功能,如代谢过程调控、蛋白质磷酸化和染色质组织。KEGG通路分析显示,Ras信号通路、rap1信号通路、PI3K - Akt信号通路和ECM受体相互作用与差异表达的circRNAs有关。qRT-PCR验证结果与高通量测序数据的circRNA表达趋势总体一致。circRNA-miRNA-mRNA相互作用网络表明,与circRNAs相关的miRNAs和mRNAs在VILI中起关键作用。通过高通量测序结合生物信息学分析在VILI小鼠组织中鉴定出差异表达的circRNAs,结果为进一步研究circRNAs在VILI发生发展中的机制奠定了基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1ad6/8960733/11ac4d8cba8a/fphys-13-838196-g001.jpg

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