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一种基于质粒的新型微小RNA抑制剂系统,可在转基因小鼠和细胞中抑制微小RNA家族:一种潜在的新型治疗试剂。

A new plasmid-based microRNA inhibitor system that inhibits microRNA families in transgenic mice and cells: a potential new therapeutic reagent.

作者信息

Cao H, Yu W, Li X, Wang J, Gao S, Holton N E, Eliason S, Sharp T, Amendt B A

机构信息

Institute of Biosciences and Technology, Texas A&M Health Science Center, Houston, TX, USA.

Department of Anatomy and Cell Biology, Carver College of Medicine, University of Iowa, Iowa City, IA, USA.

出版信息

Gene Ther. 2016 Jun;23(6):527-42. doi: 10.1038/gt.2016.22. Epub 2016 Mar 2.

Abstract

Current tools for the inhibition of microRNA (miR) function are limited to modified antisense oligonucleotides, sponges and decoy RNA molecules and none have been used to understand miR function during development. CRISPR/Cas-mediated deletion of miR sequences within the genome requires multiple chromosomal deletions to remove all functional miR family members because of duplications. Here, we report a novel plasmid-based miR inhibitor system (PMIS) that expresses a new RNA molecule, which inhibits miR family members in cells and mice. The PMIS engineered RNA optimal secondary structure, flanking sequences and specific antisense miR oligonucleotide sequence bind the miR in a stable complex to inhibit miR activity. In cells, one PMIS can effectively inhibit miR family members that share the same seed sequence. The PMIS shows no off-target effects or toxicity and is highly specific for miRs sharing identical seed sequences. Transgenic mice expressing both PMIS-miR-17-18 and PMIS-miR-19-92 show similar phenotypes of miR-17-92-knockout mice. Interestingly, mice only expressing PMIS-miR-17-18 have developmental defects distinct from mice only expressing PMIS-miR-19-92 demonstrating usefulness of the PMIS system to dissect different functions of miRs within clusters. Different PMIS miR inhibitors can be linked together to knock down multiple miRs expressed from different chromosomes. Inhibition of the miR-17-92, miR-106a-363 and miR-106b-25 clusters reveals new mechanisms and developmental defects for these miRs. We report a new tool to dissect the role of miRs in development without genome editing, inhibit miR function in cells and as a potential new therapeutic reagent.

摘要

目前用于抑制微小RNA(miR)功能的工具仅限于修饰的反义寡核苷酸、海绵和诱饵RNA分子,且尚无工具用于了解miR在发育过程中的功能。由于miR序列存在重复,通过CRISPR/Cas介导的基因组内miR序列缺失需要多次染色体缺失才能去除所有功能性miR家族成员。在此,我们报告了一种基于质粒的新型miR抑制剂系统(PMIS),该系统表达一种新的RNA分子,可在细胞和小鼠中抑制miR家族成员。PMIS设计的RNA最佳二级结构、侧翼序列和特定的反义miR寡核苷酸序列与miR形成稳定复合物以抑制miR活性。在细胞中,一个PMIS可有效抑制具有相同种子序列的miR家族成员。PMIS无脱靶效应或毒性,对具有相同种子序列的miR具有高度特异性。同时表达PMIS-miR-17-18和PMIS-miR-19-92的转基因小鼠表现出与miR-17-92基因敲除小鼠相似的表型。有趣的是,仅表达PMIS-miR-17-18的小鼠具有与仅表达PMIS-miR-19-92的小鼠不同的发育缺陷,这表明PMIS系统有助于剖析miR簇内不同miR的功能。不同的PMIS miR抑制剂可连接在一起以敲低从不同染色体表达的多个miR。对miR-17-92、miR-106a-363和miR-106b-25簇的抑制揭示了这些miR的新机制和发育缺陷。我们报告了一种无需基因组编辑即可剖析miR在发育中的作用、抑制细胞中miR功能并作为潜在新治疗试剂的新工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3cdd/4895434/0afee6c3c322/gt201622f1.jpg

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