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简短报告:miR-145的抑制增强人皮肤成纤维细胞重编程为诱导多能干细胞的过程。

Brief Report: Inhibition of miR-145 Enhances Reprogramming of Human Dermal Fibroblasts to Induced Pluripotent Stem Cells.

作者信息

Barta Tomas, Peskova Lucie, Collin Joseph, Montaner David, Neganova Irina, Armstrong Lyle, Lako Majlinda

机构信息

International Clinical Research Center, St. Anne's University Hospital Brno, Brno, Czech Republic.

Department of Histology and Embryology, Faculty of Medicine, Masaryk University, Brno, Czech Republic.

出版信息

Stem Cells. 2016 Jan;34(1):246-51. doi: 10.1002/stem.2220. Epub 2015 Oct 9.

Abstract

MicroRNA (miRNAs) are short noncoding RNA molecules involved in many cellular processes and shown to play a key role in somatic cell induced reprogramming. We performed an array based screening to identify candidates that are differentially expressed between dermal skin fibroblasts (DFs) and induced pluripotent stem cells (iPSCs). We focused our investigations on miR-145 and showed that this candidate is highly expressed in DFs relative to iPSCs and significantly downregulated during reprogramming process. Inhibition of miR-145 in DFs led to the induction of "cellular plasticity" demonstrated by: (a) alteration of cell morphology associated with downregulation of mesenchymal and upregulation of epithelial markers; (b) upregulation of pluripotency-associated genes including SOX2, KLF4, C-MYC; (c) downregulation of miRNA let-7b known to inhibit reprogramming; and (iv) increased efficiency of reprogramming to iPSCs in the presence of reprogramming factors. Together, our results indicate a direct functional link between miR-145 and molecular pathways underlying reprogramming of somatic cells to iPSCs.

摘要

微小RNA(miRNA)是参与许多细胞过程的短链非编码RNA分子,在体细胞诱导重编程中发挥关键作用。我们进行了基于阵列的筛选,以鉴定在真皮皮肤成纤维细胞(DF)和诱导多能干细胞(iPSC)之间差异表达的候选物。我们将研究重点放在miR-145上,结果表明该候选物在DF中相对于iPSC高度表达,并且在重编程过程中显著下调。在DF中抑制miR-145导致“细胞可塑性”的诱导,表现为:(a)细胞形态改变,伴有间充质标记物下调和上皮标记物上调;(b)多能性相关基因包括SOX2、KLF4、C-MYC的上调;(c)已知抑制重编程的miRNA let-7b的下调;以及(iv)在重编程因子存在的情况下,重编程为iPSC的效率提高。总之,我们的结果表明miR-145与体细胞重编程为iPSC的分子途径之间存在直接功能联系。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6618/4982107/e25824c1057d/STEM-34-246-g001.jpg

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