Novel RNA molecular bioengineering technology efficiently produces functional miRNA agents.

IF 4.2 3区 生物学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY RNA Pub Date : 2024-05-16 DOI:10.1261/rna.079904.123
Gavin M Traber, Colleen Yi, Neelu Batra, Mei-Juan Tu, Ai-Ming Yu
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引用次数: 0

Abstract

Genome-derived microRNAs (miRNAs or miRs) govern posttranscriptional gene regulation and play important roles in various cellular processes and disease progression. While chemo-engineered miRNA mimics or biosimilars made in vitro are widely available and used, miRNA agents produced in vivo are emerging to closely recapitulate natural miRNA species for research. Our recent work has demonstrated the success of high-yield, in vivo production of recombinant miRNAs by using human tRNA (htRNA) fused precursor miRNA (pre-miR) carriers. In this study, we aim to compare the production of bioengineered RNA (BioRNA) molecules with glycyl versus leucyl htRNA fused hsa-pre-miR-34a carriers, namely, BioRNAGly and BioRNALeu, respectively, and perform the initial functional assessment. We designed, cloned, overexpressed, and purified a total of 48 new BioRNA/miRNAs, and overall expression levels, final yields, and purities were revealed to be comparable between BioRNAGly and BioRNALeu molecules. Meanwhile, the two versions of BioRNA/miRNAs showed similar activities to inhibit non-small cell lung cancer cell viability. Interestingly, functional analyses using model BioRNA/miR-7-5p demonstrated that BioRNAGly/miR-7-5p exhibited greater efficiency to regulate a known target gene expression (EGFR) than BioRNALeu/miR-7-5p, consistent with miR-7-5p levels released in cells. Moreover, BioRNAGly/miR-7-5p showed comparable or slightly greater activities to modulate MRP1 and VDAC1 expression, compared with miRCURY LNA miR-7-5p mimic. Computational modeling illustrated overall comparable 3D structures for exemplary BioRNA/miRNAs with noticeable differences in htRNA species and payload miRNAs. These findings support the utility of hybrid htRNA/hsa-pre-miR-34a as reliable carriers for RNA molecular bioengineering, and the resultant BioRNAs serve as functional biologic RNAs for research and development.

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新型 RNA 分子生物工程技术可高效生产功能性 miRNA 制剂。
基因组衍生的微 RNA(miRNA 或 miR)控制转录后基因调控,在各种细胞过程和疾病进展中发挥重要作用。虽然体外制造的化学工程miRNA模拟物或生物仿制药可广泛获得和使用,但体内制造的miRNA制剂正在兴起,以密切再现用于研究的天然miRNA物种。我们最近的研究表明,利用人类 tRNA(htRNA)融合前体 miRNA(pre-miR)载体,可以成功地在体内高产生产重组 miRNA。在本研究中,我们旨在比较使用糖基和亮氨酰 htRNA 融合 hsa-pre-miR-34a 载体(即 BioRNAGly 和 BioRNALeu)生产生物工程 RNA(BioRNA)分子的情况,并进行初步功能评估。我们共设计、克隆、过表达和纯化了 48 个新的 BioRNA/miRNA,结果显示 BioRNAGly 和 BioRNALeu 分子的总体表达水平、最终产量和纯度相当。同时,两种版本的 BioRNA/miRNA 在抑制非小细胞肺癌细胞活力方面表现出相似的活性。有趣的是,利用模型 BioRNA/miR-7-5p 进行的功能分析显示,BioRNAGly/miR-7-5p 比 BioRNALeu/miR-7-5p 在调控已知靶基因(表皮生长因子受体)表达方面表现出更高的效率,这与细胞中释放的 miR-7-5p 水平一致。此外,与 miRCURY LNA miR-7-5p 模拟物相比,BioRNAGly/miR-7-5p 在调节 MRP1 和 VDAC1 表达方面的活性相当或稍高。计算建模显示,示例生物 RNA/miRNA 的三维结构总体相当,但 htRNA 种类和有效载荷 miRNA 存在明显差异。这些发现支持了混合 htRNA/hsa-pre-miR-34a 作为 RNA 分子生物工程可靠载体的实用性,由此产生的 BioRNA 可作为功能性生物 RNA 用于研究和开发。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
RNA
RNA 生物-生化与分子生物学
CiteScore
8.30
自引率
2.20%
发文量
101
审稿时长
2.6 months
期刊介绍: RNA is a monthly journal which provides rapid publication of significant original research in all areas of RNA structure and function in eukaryotic, prokaryotic, and viral systems. It covers a broad range of subjects in RNA research, including: structural analysis by biochemical or biophysical means; mRNA structure, function and biogenesis; alternative processing: cis-acting elements and trans-acting factors; ribosome structure and function; translational control; RNA catalysis; tRNA structure, function, biogenesis and identity; RNA editing; rRNA structure, function and biogenesis; RNA transport and localization; regulatory RNAs; large and small RNP structure, function and biogenesis; viral RNA metabolism; RNA stability and turnover; in vitro evolution; and RNA chemistry.
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