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首页> 外文期刊>Human Molecular Genetics >Deep sequencing of small RNAs from human skin reveals major alterations in the psoriasis miRNAome
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Deep sequencing of small RNAs from human skin reveals major alterations in the psoriasis miRNAome

机译:人类皮肤中小RNA的深度测序揭示了牛皮癣miRNAome的主要变化

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Psoriasis is a chronic and complex inflammatory skin disease with lesions displaying dramatically altered mRNA expression profiles. However, much less is known about the expression of small RNAs. Here, we describe a comprehensive analysis of the normal and psoriatic skin miRNAome with next-generation sequencing in a large patient cohort. We generated 6.7 × 108 small RNA reads representing 717 known and 284 putative novel microRNAs (miRNAs). We also observed widespread expression of isomiRs and miRNA*s derived from known and novel miRNA loci, and a low frequency of miRNA editing in normal and psoriatic skin. The expression and processing of selected novel miRNAs were confirmed with qRT-PCR in skin and other human tissues or cell lines. Eighty known and 18 novel miRNAs were 2–42-fold differentially expressed in psoriatic skin. Of particular significance was the 2.7-fold upregulation of a validated novel miRNA derived from the antisense strand of the miR-203 locus, which plays a role in epithelial differentiation. Other differentially expressed miRNAs included hematopoietic-specific miRNAs such as miR-142-3p and miR-223/223*, and angiogenic miRNAs such as miR-21, miR-378, miR-100 and miR-31, which was the most highly upregulated miRNA in psoriatic skin. The functions of these miRNAs are consistent with the inflammatory and hyperproliferative phenotype of psoriatic lesions. In situ hybridization of differentially expressed miRNAs revealed stratified epidermal expression of an uncharacterized keratinocyte-derived miRNA, miR-135b, as well as the epidermal infiltration of the hematopoietic-specific miRNA, miR-142-3p, in psoriatic lesions. This study lays a critical framework for functional characterization of miRNAs in healthy and diseased skin.
机译:牛皮癣是一种慢性和复杂的炎症性皮肤病,其病变表现出显着改变的mRNA表达谱。但是,关于小RNA的表达知之甚少。在这里,我们描述了在大型患者队列中使用下一代测序对正常和银屑病皮肤miRNAome进行的全面分析。我们产生了6.7×10 8 小RNA读数,分别代表717个已知和284个推定的新型microRNA(miRNA)。我们还观察到了来自已知和新型miRNA基因座的isomiRs和miRNA *的广泛表达,以及正常和牛皮癣皮肤中miRNA编辑的低频率。通过qRT-PCR在皮肤和其他人体组织或细胞系中证实了所选新型miRNA的表达和加工。在牛皮癣皮肤中,有八十种已知的miRNA和18种新颖的miRNA差异表达了2–42倍。特别重要的是从miR-203基因座反义链衍生的经过验证的新型miRNA的2.7倍上调,它在上皮分化中起作用。其他差异表达的miRNA包括造血特异性miRNA,例如miR-142-3p和miR-223 / 223 *,以及血管生成性miRNA,例如miR-21,miR-378,miR-100和miR-31,其表达水平最高银屑病皮肤中的miRNA上调。这些miRNA的功能与银屑病皮损的炎症和过度增殖表型一致。差异表达的miRNA的原位杂交揭示了牛皮癣病变中未表征的角质形成细胞衍生的miRNA miR-135b的分层表皮表达以及造血特异性miRNA miR-142-3p的表皮浸润。这项研究为健康和患病皮肤中miRNA的功能表征奠定了关键框架。

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  • 来源
    《Human Molecular Genetics 》 |2011年第20期| p.4025-4040| 共16页
  • 作者单位

    Department of Genetics,;

    Department of Computer Science and Engineering, Washington University, St Louis, MO 63130, USA and;

    Department of Computer Science and Engineering, Washington University, St Louis, MO 63130, USA and;

    Department of Dermatology, Baylor University Medical Center, Houston, TX 77030, USA;

    Department of Dermatology, Baylor University Medical Center, Houston, TX 77030, USA;

    Department of Dermatology, Baylor University Medical Center, Houston, TX 77030, USA;

    Department of Genetics,|Department of Computer Science and Engineering, Washington University, St Louis, MO 63130, USA and;

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