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微小 RNA 调控代谢综合征诱导的猪脂肪组织来源间充质干细胞衰老通过 P16/MAPK 通路。

Micro-RNAS Regulate Metabolic Syndrome-induced Senescence in Porcine Adipose Tissue-derived Mesenchymal Stem Cells through the P16/MAPK Pathway.

机构信息

1 Divisions of Nephrology and Hypertension, Mayo Clinic, Rochester, USA.

2 Department of Nephrology, The First Hospital Affiliated to Jinan University, Guangzhou, China.

出版信息

Cell Transplant. 2018 Oct;27(10):1495-1503. doi: 10.1177/0963689718795692. Epub 2018 Sep 6.

Abstract

Mesenchymal stem cells (MSCs) constitute an important repair system, but may be impaired by exposure to cardiovascular risk factors. Consequently, adipose tissue-derived MSCs from pigs with the metabolic syndrome (MetS) show decreased vitality. A growing number of microRNAs (miRNAs) are recognized as key modulators of senescence, but their role in regulating senescence in MSC in MetS is unclear. We tested the hypothesis that MetS upregulates in MSC expression of miRNAs that can serve as post-transcriptional regulators of senescence-associated (SA) genes. MSCs were collected from swine abdominal adipose tissue after 16 weeks of Lean or Obese diet ( n = 6 each). Next-generation miRNA sequencing (miRNA-seq) was performed to identify miRNAs up-or down-regulated in MetS-MSCs compared with Lean-MSCs. Functional pathways of SA genes targeted by miRNAs were analyzed using gene ontology. MSC senescence was evaluated by p16 and p21 immunoreactivity, H2AX protein expression, and SA-β-Galactosidase activity. In addition, gene expression of p16, p21, MAPK3 (ERK1) and MAPK14, and MSC migration were studied after inhibition of SA-miR-27b. Senescence biomarkers were significantly elevated in MetS-MSCs. We found seven upregulated miRNAs, including miR-27b, and three downregulated miRNAs in MetS-MSCs, which regulate 35 SA genes, particularly MAPK signaling. Inhibition of miR-27b in cultured MSCs downregulated p16 and MARP3 genes, and increased MSC migration. MetS modulates MSC expression of SA-miRNAs that may regulate their senescence, and the p16 pathway seems to play an important role in MetS-induced MSC senescence.

摘要

间充质干细胞(MSCs)构成了一个重要的修复系统,但可能会因暴露于心血管危险因素而受损。因此,患有代谢综合征(MetS)的猪的脂肪组织来源的 MSCs 显示出活力降低。越来越多的 microRNAs(miRNAs)被认为是衰老的关键调节剂,但它们在调节 MetS 中 MSC 衰老中的作用尚不清楚。我们检验了这样一个假设,即 MetS 上调了 MSC 中 miRNA 的表达,这些 miRNA 可以作为衰老相关(SA)基因的转录后调节剂。从 Lean 或 Obese 饮食 16 周后的猪腹部脂肪组织中收集 MSCs(每组 6 只)。进行下一代 miRNA 测序(miRNA-seq)以鉴定与 Lean-MSCs 相比在 MetS-MSCs 中上调或下调的 miRNA。使用基因本体论分析 miRNA 靶向的 SA 基因的功能途径。通过 p16 和 p21 免疫反应性、H2AX 蛋白表达和 SA-β-半乳糖苷酶活性评估 MSC 衰老。此外,研究了抑制 SA-miR-27b 后 p16、p21、MAPK3(ERK1)和 MAPK14 的基因表达以及 MSC 迁移。MetS-MSCs 中的衰老生物标志物显著升高。我们发现 MetS-MSCs 中有 7 个上调的 miRNA,包括 miR-27b,以及 3 个下调的 miRNA,它们调节 35 个 SA 基因,特别是 MAPK 信号。在培养的 MSCs 中抑制 miR-27b 下调了 p16 和 MARP3 基因,并增加了 MSC 迁移。MetS 调节 MSC 中 SA-miRNA 的表达,这些 miRNA 可能调节其衰老,并且 p16 途径似乎在 MetS 诱导的 MSC 衰老中发挥重要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8796/6180720/3e91703bd844/10.1177_0963689718795692-fig1.jpg

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