首页> 外文期刊>Nucleic Acids Research >miR-146a-5p circuitry uncouples cell proliferation and migration, but not differentiation, in human mesenchymal stem cells
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miR-146a-5p circuitry uncouples cell proliferation and migration, but not differentiation, in human mesenchymal stem cells

机译:miR-146a-5p电路解耦人间充质干细胞中的细胞增殖和迁移,但不分化

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Administration of mesenchymal stem cells (MSCs) has the potential to ameliorate degenerative disorders and to repair damaged tissues. The homing of transplanted MSCs to injured sites is a critical property of engraftment. Our aim was to identify microRNAs involved in controlling MSC proliferation and migration. MSCs can be isolated from bone marrow and umbilical cord Wharton's jelly (BM-MSCs and WJ-MSCs, respectively), and WJ-MSCs show poorer motility yet have a better amplification rate compared with BM-MSCs. Small RNA sequencing revealed that miR-146a-5p is significantly overexpressed and has high abundance in WJ-MSCs. Knockdown of miR-146a-5p in WJ-MSCs inhibited their proliferation yet enhanced their migration, whereas overexpression of miR-146a-5p in BM-MSCs did not influence their osteogenic and adipogenic potentials. Chemokine (C-X-C motif) ligand 12 (CXCL12), together with SIKE1, which is an I-kappa-B kinase epsilon (IKK epsilon) suppressor, is a direct target of miR-146a-5p in MSCs. Knockdown of miR-146a-5p resulted in the down-regulation of nuclear factor kappa-B (NF-kappa B) activity, which is highly activated in WJ-MSCs and is known to activate miR-146a-5p promoter. miR-146a-5p is also downstream of CXCL12, and a negative feedback loop is therefore formed in MSCs. These findings suggest that miR-146a-5p is critical to the uncoupling of motility and proliferation of MSCs. Our miRNome data also provide a roadmap for further understanding MSC biology.
机译:间充质干细胞(MSC)的管理有可能改善退化性疾病和修复受损的组织。将移植的MSC归巢至受伤部位是植入的关键性质。我们的目的是鉴定参与控制MSC增殖和迁移的microRNA。可以从骨髓和脐带沃顿氏胶体(分别为BM-MSC和WJ-MSC)中分离MSC,并且与BM-MSC相比,WJ-MSC表现出较差的运动能力,但扩增率更高。小RNA测序显示,miR-146a-5p在WJ-MSC中显着过表达并且具有很高的丰度。在WJ-MSC中抑制miR-146a-5p抑制了增殖,但增强了迁移能力,而在BM-MSC中过表达miR-146a-5p并没有影响其成骨和成脂潜能。趋化因子(C-X-C基序)配体12(CXCL12)与SIKE1一起是MSC中miR-146a-5p的直接靶点,SIKE1是I-κB激酶ε(IKK epsilon)抑制剂。敲低miR-146a-5p导致核因子kappa-B(NF-kappa B)活性下调,该活性在WJ-MSC中高度激活,并且已知可激活miR-146a-5p启动子。 miR-146a-5p也在CXCL12的下游,因此在MSC中形成了负反馈回路。这些发现表明,miR-146a-5p对于MSC的动力和增殖解耦至关重要。我们的miRNome数据还提供了进一步了解MSC生物学的路线图。

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