首页> 外文期刊>Mechanisms of Development >MiR-203a is differentially expressed during branching morphogenesis and EMT in breast progenitor cells and is a repressor of peroxidasin
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MiR-203a is differentially expressed during branching morphogenesis and EMT in breast progenitor cells and is a repressor of peroxidasin

机译:miR-203a在乳腺祖细胞的分支形态发生和EMT中差异表达,是过氧化物素的阻遏物

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摘要

MicroRNAs regulate developmental events such as branching morphogenesis, epithelial to mesenchymal transition (EMT) and its reverse process mesenchymal to epithelial transition (MET). In this study, we performed small RNA sequencing of a breast epithelial progenitor cell line (D492), and its mesenchymal derivative (D492M) cultured in three-dimensional microenvironment. Among the most downregulated miRNAs in D492M was miR-203a, a miRNA that plays an important role in epithelial differentiation. Increased expression of miR-203a was seen in D492, concomitant with increased complexity of branching. When miR-203a was overexpressed in D492M, a partial reversion towards epithelial phenotype was seen. Gene expression analysis of D492M and D492M(miR-203a) revealed peroxidasin, a collagen IV cross-linker, as the most significantly downregulated gene in D492M(miR-203a). Collectively, we demonstrate that miR-203a expression temporally correlates with branching morphogenesis and is suppressed in D492M. Overexpression of miR-203a in D492M induces a partial MET and reduces the expression of peroxidasin. Furthermore, we demonstrate that miR-203a is a novel repressor of peroxidasin. MiR-203-peroxidasin axis may be an important regulator in branching morphogenesis, EMT/MET and basement membrane remodeling.
机译:MicroRNA调节诸如分枝形态发生的发育事件,上皮对间充质转换(EMT)及其反向过程间充质转换(满足)。在该研究中,我们对三维微环境培养的乳房上皮祖细胞系(D492)进行了小RNA测序,以及其间充质衍生物(D492M)。在D492M中最下调的miRNA是miR-203a,一种在上皮分化中发挥重要作用的miRNA。在D492中观察到miR-203a的表达增加,伴随着增加的分支复杂性。当miR-203a在d492m中过表达时,看到朝向上皮表型的部分逆转。 D492M和D492M(MIR-203A)的基因表达分析显示过氧化物素,胶原IV交联剂,作为D492M中最显着下调的基因(miR-203a)。总的来说,我们证明miR-203a表达与分支形态发生时与分枝形态发生相关,并且在D492m中被抑制。 MIR-203A在D492M中的过表达诱导部分遇到并减少过氧化物蛋白的表达。此外,我们证明miR-203a是过氧化物蛋白的一种新型阻遏物。 MiR-203-过氧化物蛋白轴可以是分支形态发生,EMT / MET和基底膜重塑中的重要调节剂。

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  • 来源
    《Mechanisms of Development》 |2019年第2019期|共14页
  • 作者单位

    Univ Iceland Sch Hlth Sci Fac Med Stem Cell Res Unit Biomed Ctr Dept Anat Reykjavik Iceland;

    Univ Iceland Sch Hlth Sci Fac Med Stem Cell Res Unit Biomed Ctr Dept Anat Reykjavik Iceland;

    Univ Iceland Sch Hlth Sci Fac Med Stem Cell Res Unit Biomed Ctr Dept Anat Reykjavik Iceland;

    Univ Iceland Sch Hlth Sci Fac Med Stem Cell Res Unit Biomed Ctr Dept Anat Reykjavik Iceland;

    Univ Iceland Sch Hlth Sci Fac Med Stem Cell Res Unit Biomed Ctr Dept Anat Reykjavik Iceland;

    Johns Hopkins Univ Dept Biomed Engn Baltimore MD 21218 USA;

    Landspitali Univ Hosp Dept Lab Hematol Reykjavik Iceland;

    Univ Iceland Sch Hlth Sci Fac Med Stem Cell Res Unit Biomed Ctr Dept Anat Reykjavik Iceland;

    Univ Iceland Sch Hlth Sci Fac Med Stem Cell Res Unit Biomed Ctr Dept Anat Reykjavik Iceland;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 普通生物学;
  • 关键词

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