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首页> 外文期刊>Frontiers in Molecular Biosciences >Identification of the Core MicroRNAs and Potential Molecular Mechanismsin Sarcoidosis Using Bioinformatics Analysis
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Identification of the Core MicroRNAs and Potential Molecular Mechanismsin Sarcoidosis Using Bioinformatics Analysis

机译:使用生物信息学分析鉴定核心微小RNA和潜在分子机制的潜在分子机制

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摘要

Sarcoidosis is a systemic heterogeneous inflammatory disease; however, the etiology and pathogenesis of sarcoidosis are still unknown. In this study, we aimed to investigate the core microRNAs and potential molecular mechanisms in sarcoidosis. The DE-miRNAs were diagnosed using the LIMMA software package. DIANA-mirPath was used to perform pathway and GO enrichment analysis of the DE-miRNAs. PPI networks and miRNA-target gene regulatory networks were used to obtain insight into the actions of DE-miRNAs. The expression of hub genes and miRNAs was validated in clinical specimens. A total of 266 DE-miRNAs were screened. Among these DE-miRNAs, hsa-miR-144, hsa-miR-126, and hsa-miR-106a were the top upregulated miRNAs and hsa-miR-151-3p, hsa-miR-320d, and hsa-miR-324-3p were the top downregulated miRNAs. NR3C1, ZBTB7A, NUFIP2, BZW1, ERGIC2, and VEGFA were mapped as the most targeted hub genes in the upregulation of miRNAs, and MCL1 and SAE1 were the most targeted hub genes in the downregulation of miRNA. VEGFA and NR3C1 were selected and potentially modulated by hsa-miR-126, hsa-miR-20b, and hsa-miR-106a. In sarcoidosis pathological tissue, hsa-miR-126 was highly expressed, and VEGFA and NR3C1 were over expressed. In conclusion, our results revealed the dysregulation of hsa-miR-126 and a potential regulatory mechanism for pathogenesis in sarcoidosis.
机译:结节病是一种全身性异质炎症疾病;然而,结节病的病因和发病机制仍然未知。在这项研究中,我们旨在探讨核心微大核心和潜在的结节病潜在的分子机制。使用Limma软件包诊断DE-MIRNA。 Diana-MiRPath用于进行途径并进行DE-MIRNA的富集分析。 PPI网络和MiRNA-Target基因监管网络用于获得对De-MiRNA的动作的洞察力。临床标本中验证了轮毂基因和miRNA的表达。共筛查了总共266个脱麦乳醛。在这些de-miRNA中,HSA-miR-144,HSA-miR-126和HSA-miR-106a是顶部上调的miRNA和HSA-miR-151-3P,HSA-MIR-320D和HSA-MIR-324 -3p是顶部下调的miRNA。 NR3C1,ZBTB7a,Nufip2,BzW1,Ergic2和Vegfa被映射为MiRNA的上调中最有针对性的轮毂基因,MCl1和SAE1是MiRNA下调中最靶向的轮毂基因。由HSA-MIR-126,HSA-MIR-20B和HSA-MIR-106A选择和潜在地调节VEGFA和NR3C1。在顺节病病理组织中,HSA-miR-126高表达,并且VEGFA和NR3C1表达。总之,我们的结果揭示了HSA-miR-126的失调和潜在的疾病调节机制。

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