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靶向圆锥角膜关键通路中基因的差异表达微小RNA

Differentially expressed microRNAs targeting genes in key pathways in keratoconus.

作者信息

Nowak-Malczewska Dorota M, Swierkowska Joanna, Gajecka Marzena

机构信息

Chair and Department of Genetics and Pharmaceutical Microbiology, Poznan University of Medical Sciences, Poznan, Poland.

Institute of Human Genetics, Polish Academy of Sciences, Poznan, Poland.

出版信息

Front Genet. 2024 Feb 26;15:1301676. doi: 10.3389/fgene.2024.1301676. eCollection 2024.

Abstract

Keratoconus (KTCN) is a corneal ectasia, characterized by a progressive thinning and protrusion of the cornea, with a complex etiology involving genetic, behavioral, lifestyle, and environmental factors. Previous studies indicated that microRNAs (miRNAs) could be involved in KTCN pathogenesis. This study aimed to identify precursor microRNAs (pre-miRNAs) differentially expressed in KTCN corneas and to characterize mature miRNAs and their target genes. Expression levels of pre-miRNAs were retrieved from our previously obtained RNA sequencing data of 25 KTCN and 25 non-KTCN human corneas (PMID:28145428, PMID:30994860). Differential expression with FDR ≤0.01 and ≥1.5-fold changes were considered significant. Lists of target genes (target score ≥90) of mature miRNAs were obtained from miRDB. Revealed up-/downregulated miRNAs and their target genes were assessed in databases and literature. Enrichment analyses were completed applying the DAVID database. From a total of 47 pre-miRNAs, six were remarkably upregulated (, , , , , ) and four downregulated (, , , ) in KTCN corneas. Out of the 1,409 target genes, 220 genes with decreased and 57 genes with increased expression levels in KTCN samples vs non-KTCN samples were found. The extracellular matrix (ECM) organization, response to mechanical stimulus, regulation of cell shape, and signal transduction processes/pathways were identified as distinctive in enrichment analyses. Also, processes associated with the regulation of transcription and DNA binding were listed. Indicated miRNAs and their target genes might be involved in KTCN pathogenesis via disruption of crucial molecular processes, including ECM organization and signal transduction.

摘要

圆锥角膜(KTCN)是一种角膜扩张性疾病,其特征是角膜进行性变薄和突出,病因复杂,涉及遗传、行为、生活方式和环境因素。先前的研究表明,微小RNA(miRNA)可能参与圆锥角膜的发病机制。本研究旨在鉴定在圆锥角膜角膜中差异表达的前体微小RNA(pre-miRNA),并对成熟miRNA及其靶基因进行表征。pre-miRNA的表达水平是从我们先前获得的25例圆锥角膜和25例非圆锥角膜人角膜的RNA测序数据中检索到的( PMID:28145428, PMID:30994860)。 FDR≤0.01且变化倍数≥1.5倍被认为具有显著差异。成熟miRNA的靶基因列表(靶标分数≥90)来自miRDB。在数据库和文献中评估了揭示的上调/下调miRNA及其靶基因。使用DAVID数据库完成富集分析。在总共47种pre-miRNA中,有6种在圆锥角膜角膜中显著上调( , , , , , ),4种下调( , , , )。在1409个靶基因中,发现与非圆锥角膜样本相比,圆锥角膜样本中220个基因表达水平降低,57个基因表达水平升高。细胞外基质(ECM)组织、对机械刺激的反应、细胞形状的调节以及信号转导过程/途径在富集分析中被确定为具有独特性。此外,还列出了与转录调节和DNA结合相关的过程。所示的miRNA及其靶基因可能通过破坏关键分子过程(包括ECM组织和信号转导)参与圆锥角膜的发病机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2113/10925626/6fa9ace61c5b/fgene-15-1301676-g001.jpg

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