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利用微RNA捕获亲和力结合下一代测序技术鉴定MiR-21-5p作为间皮素表达的功能调节因子

Identification of MiR-21-5p as a Functional Regulator of Mesothelin Expression Using MicroRNA Capture Affinity Coupled with Next Generation Sequencing.

作者信息

De Santi Chiara, Vencken Sebastian, Blake Jonathon, Haase Bettina, Benes Vladimir, Gemignani Federica, Landi Stefano, Greene Catherine M

机构信息

Respiratory Research Division, Department of Medicine, Royal College of Surgeons in Ireland, Dublin, Republic of Ireland.

Genomics Core Facility, EMBL European Molecular Biology Laboratory, Heidelberg, Germany.

出版信息

PLoS One. 2017 Jan 26;12(1):e0170999. doi: 10.1371/journal.pone.0170999. eCollection 2017.

Abstract

MicroRNAs (miRNAs) are small non-coding RNAs that regulate mRNA expression mainly by silencing target transcripts via binding to miRNA recognition elements (MREs) in the 3'untranslated region (3'UTR). The identification of bona fide targets is challenging for researchers working on the functional aspect of miRNAs. Recently, we developed a method (miR-CATCH) based on biotinylated DNA antisense oligonucleotides that capture the mRNA of interest and facilitates the characterisation of miRNAs::mRNA interactions in a physiological cellular context. Here, the miR-CATCH technique was applied to the mesothelin (MSLN) gene and coupled with next generation sequencing (NGS), to identify miRNAs that regulate MSLN mRNA and that may be responsible for its increased protein levels found in malignant pleural mesothelioma (MPM). Biotinylated MSLN oligos were employed to isolate miRNA::MSLN mRNA complexes from a normal cell line (Met-5A) which expresses low levels of MSLN. MiRNAs targeting the MSLN mRNA were identified by NGS and miR-21-5p and miR-100-5p were selected for further validation analyses. MiR-21-5p was shown to be able to modulate MSLN expression in miRNA mimic experiments in a panel of malignant and non-malignant cell lines. Further miRNA inhibitor experiments and luciferase assays in Mero-14 cells validated miR-21-5p as a true regulator of MSLN. Moreover, in vitro experiments showed that treatment with miR-21-5p mimic reduced proliferation of MPM cell lines. Altogether, this work shows that the miR-CATCH technique, coupled with NGS and in vitro validation, represents a reliable method to identify native miRNA::mRNA interactions. MiR-21-5p is suggested as novel regulator of MSLN with a possible functional role in cellular growth.

摘要

微小RNA(miRNA)是一类小的非编码RNA,主要通过与3'非翻译区(3'UTR)中的miRNA识别元件(MRE)结合来沉默靶转录本,从而调控mRNA表达。对于研究miRNA功能方面的研究人员来说,鉴定真正的靶标具有挑战性。最近,我们开发了一种基于生物素化DNA反义寡核苷酸的方法(miR-CATCH),该方法可捕获感兴趣的mRNA,并有助于在生理细胞环境中表征miRNA::mRNA相互作用。在此,将miR-CATCH技术应用于间皮素(MSLN)基因,并与下一代测序(NGS)相结合,以鉴定调控MSLN mRNA且可能导致恶性胸膜间皮瘤(MPM)中其蛋白质水平升高的miRNA。使用生物素化的MSLN寡核苷酸从表达低水平MSLN的正常细胞系(Met-5A)中分离miRNA::MSLN mRNA复合物。通过NGS鉴定靶向MSLN mRNA的miRNA,并选择miR-21-5p和miR-100-5p进行进一步的验证分析。在一组恶性和非恶性细胞系的miRNA模拟实验中,miR-21-5p被证明能够调节MSLN表达。在Mero-14细胞中进行的进一步miRNA抑制剂实验和荧光素酶测定验证了miR-21-5p是MSLN的真正调节因子。此外,体外实验表明,用miR-21-5p模拟物处理可降低MPM细胞系的增殖。总之,这项工作表明,miR-CATCH技术与NGS和体外验证相结合,是鉴定天然miRNA::mRNA相互作用的可靠方法。miR-21-5p被认为是MSLN的新型调节因子,可能在细胞生长中发挥功能作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c468/5268774/ef06b4d48ed4/pone.0170999.g001.jpg

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