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首页> 外文期刊>Briefings in bioinformatics >Critical microRNAs and regulatory motifs in cleft palate identified by a conserved miRNA–TF–gene network approach in humans and mice
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Critical microRNAs and regulatory motifs in cleft palate identified by a conserved miRNA–TF–gene network approach in humans and mice

机译:通过守恒的MiRNA-TF基因网络方法在人和小鼠中鉴定的腭裂中的临界小鼠和调节基序

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摘要

Cleft palate (CP) is the second most common congenital birth defect. The etiology of CP is complicated, with involvement of various genetic and environmental factors. To investigate the gene regulatory mechanisms, we designed a powerful regulatory analytical approach to identify the conserved regulatory networks in humans and mice, from which we identified critical microRNAs (miRNAs), target genes and regulatory motifs (miRNA–TF–gene) related to CP. Using our manually curated genes and miRNAs with evidence in CP in humans and mice, we constructed miRNA and transcription factor (TF) co-regulation networks for both humans and mice. A consensus regulatory loop (miR17/miR20a–FOXE1–PDGFRA) and eight miRNAs (miR-140, miR-17, miR-18a, miR-19a, miR-19b,miR-20a, miR-451a and miR-92a) were discovered in both humans and mice. The role of miR-140, which had the strongest association with CP, was investigated in both human and mouse palate cells. The overexpression of miR-140-5p, but not miR-140-3p, significantly inhibited cell proliferation.We further examined whether miR-140 overexpression could suppress the expression of its predicted target genes (BMP2, FGF9, PAX9 and PDGFRA). Our results indicated that miR-140-5p overexpression suppressed the expression of BMP2 and FGF9 in cultured human palate cells and Fgf9 and Pdgfra in cultured mouse palate cells. In summary, our conserved miRNA–TF–gene regulatory network approach is effective in detecting consensus miRNAs,motifs, and regulatory mechanisms in human and mouse CP.
机译:腭裂(CP)是第二个最常见的先天性缺陷。 CP的病因复杂化,各种遗传和环境因素的参与。为了研究基因监管机制,我们设计了一种强大的监管分析方法,以确定人和小鼠中的保守监管网络,从中鉴定了与CP相关的关键微小RNA(miRNA),靶基因和调节基因(miRNA-TF-GENE) 。使用我们的手动愈合的基因和miRNA在人和小鼠中具有CP的证据,我们构建了用于人和小鼠的miRNA和转录因子(TF)共调节网络。共识调节回路(MiR17 / miR20a-Foxe1-PDGFRA)和八个miRNA(MiR-140,MiR-17,MiR-18a,miR-19a,miR-19b,miR-20a,miR-451a和miR-92a)是在人类和小鼠中发现。在人和小鼠腭细胞中研究了miR-140的作用,其具有最强的CP与Cp。 miR-140-5p的过表达,但不是miR-140-3p,显着抑制细胞增殖。我们进一步检查了miR-140过表达是否可以抑制其预测的靶基因的表达(BMP2,FGF9,PAX9和PDGFRA)。我们的结果表明,MIR-140-5P过表达抑制了培养的小鼠腭细胞中培养的人口细胞和FGF9和PDGFRA中BMP2和FGF9的表达。总之,我们的保守的miRNA-TF-基因调节网络方法有效地检测人和小鼠CP中的共识miRNA,基序和调节机制。

著录项

  • 来源
    《Briefings in bioinformatics》 |2020年第4期|共14页
  • 作者单位

    the Shaanxi Key Laboratory for Network Computing and Security Technology School of Computer Science and Engineering Xi'an University of Technology Xi'an Shaanxi 710048 China.;

    the Center for Precision Health School of Biomedical Informatics The University of Texas Health Science Center at Houston.;

    the Bioinformatics and Systems Medicine Laboratory Center for Precision Health School of Biomedical Informatics The University of Texas Health Science Center at Houston.;

    the Shaanxi Key Laboratory for Network Computing and Security Technology School of Computer Science and Engineering Xi'an University of Technology China.;

    the Department of Diagnostic &

    Biomedical Sciences School of Dentistry The University of Texas Health Science Center at Houston.;

    the Department of Diagnostic &

    Biomedical Sciences School of Dentistry The University of Texas Health Science Center at Houston.;

    the Department of Diagnostic &

    Biomedical Sciences School of Dentistry The University of Texas Health Science Center at Houston.;

    the Center for Precision Health School of Biomedical Informatics The University of Texas Health Science Center at Houston.;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 遗传学;
  • 关键词

    cleft palate; feed-forward loop; miR-140; regulatory motif; regulatory network; transcription factor;

    机译:腭裂;前馈回路;miR-140;监管主题;监管网络;转录因子;

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