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采用改良双荧光素酶载体鉴定 B 细胞中表达的 miR-128 靶 mRNA。

Identification of miR-128 Target mRNAs That Are Expressed in B Cells Using a Modified Dual Luciferase Vector.

机构信息

Division of Molecular Immunology, Department of Internal Medicine III, Nikolaus-Fiebiger-Center of Molecular Medicine (NFZ), Friedrich-Alexander-Universität Erlangen-Nürnberg (FAU), Glückstraße 6, D-91054 Erlangen, Germany.

出版信息

Biomolecules. 2023 Oct 13;13(10):1517. doi: 10.3390/biom13101517.

Abstract

MicroRNAs (miRNAs) are 21-25 nucleotide long non-coding ribonucleic acids that modulate gene expression by degrading transcripts or inhibiting translation. The miRNA miR-128, originally thought to be brain-specific, was later also found in immune cells. To identify a valuable immune cell model system to modulate endogenous miR-128 amounts and to validate predicted miR-128 target mRNAs in B cells, we first investigated miR-128 expression using Northern blot analysis in several cell lines representing different stages of B cell development. The results showed that only primary brain cells showed significant levels of mature miR-128. To study the function of miR-128 in immune cells, we modified dual luciferase vectors to allow easy transfer of 3' UTR fragments with predicted miR-128 binding sites from widely used single to dual luciferase vectors. Comparison of in silico predicted miR-128-regulated mRNAs in single and dual luciferase constructs yielded similar results, validating the dual luciferase vector for miRNA target analysis. Furthermore, we confirmed miR-128-regulated mRNAs identified in silico and in vivo using the Ago HITS-CLIP technique and known to be expressed in B cells using the dual luciferase assay. In conclusion, this study provides new insights into the expression and function of miR-128 by validating novel target mRNAs expressed in B cells and identifying additional pathways likely controlled by this miRNA in the immune system.

摘要

微小 RNA(miRNA)是 21-25 个核苷酸长的非编码核糖核酸,通过降解转录本或抑制翻译来调节基因表达。miRNA miR-128 最初被认为是大脑特异性的,后来也在免疫细胞中发现。为了确定一种有价值的免疫细胞模型系统来调节内源性 miR-128 数量,并验证 B 细胞中预测的 miR-128 靶 mRNA,我们首先使用 Northern blot 分析在几种代表 B 细胞发育不同阶段的细胞系中研究了 miR-128 的表达。结果表明,只有原代脑细胞显示出成熟 miR-128 的显著水平。为了研究 miR-128 在免疫细胞中的功能,我们修饰了双荧光素酶载体,以便能够轻松地将具有预测 miR-128 结合位点的 3'UTR 片段从广泛使用的单荧光素酶载体转移到双荧光素酶载体。在单荧光素酶和双荧光素酶构建体中对计算预测的 miR-128 调节的 mRNA 进行比较,得到了相似的结果,验证了双荧光素酶载体用于 miRNA 靶标分析。此外,我们使用 Ago HITS-CLIP 技术在体内证实了计算和体内鉴定的 miR-128 调节的 mRNA,并且使用双荧光素酶测定法证实了在 B 细胞中表达的已知 mRNA。总之,这项研究通过验证在 B 细胞中表达的新靶 mRNA 并确定该 miRNA 在免疫系统中可能控制的其他途径,为 miR-128 的表达和功能提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/02a1/10605364/0cd659ce8154/biomolecules-13-01517-g001.jpg

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