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Advanced Design of Dumbbell-shaped Genetic Minimal Vectors Improves Non-coding and Coding RNA Expression

机译:哑铃形遗传最小载体的先进设计提高了非编码和编码RNA表达

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摘要

Dumbbell-shaped DNA minimal vectors lacking nontherapeutic genes and bacterial sequences are considered a stable, safe alternative to viral, nonviral, and naked plasmid-based gene-transfer systems. We investigated novel molecular features of dumbbell vectors aiming to reduce vector size and to improve the expression of noncoding or coding RNA. We minimized small hairpin RNA (shRNA) or microRNA (miRNA) expressing dumbbell vectors in size down to 130 bp generating the smallest genetic expression vectors reported. This was achieved by using a minimal H1 promoter with integrated transcriptional terminator transcribing the RNA hairpin structure around the dumbbell loop. Such vectors were generated with high conversion yields using a novel protocol. Minimized shRNA-expressing dumbbells showed accelerated kinetics of delivery and transcription leading to enhanced gene silencing in human tissue culture cells. In primary human T cells, minimized miRNA-expressing dumbbells revealed higher stability and triggered stronger target gene suppression as compared with plasmids and miRNA mimics. Dumbbell-driven gene expression was enhanced up to 56- or 160-fold by implementation of an intron and the SV40 enhancer compared with control dumbbells or plasmids. Advanced dumbbell vectors may represent one option to close the gap between durable expression that is achievable with integrating viral vectors and short-term effects triggered by naked RNA.
机译:缺乏非治疗基因和细菌序列的哑铃形DNA最小载体被认为是基于病毒,非病毒和裸质粒的基因转移系统的稳定,安全替代品。我们研究了哑铃载体的新颖分子特征,旨在减少载体大小并改善非编码或编码RNA的表达。我们最小化了小发夹RNA(shRNA)或microRNA(miRNA)表达哑铃载体,大小低至130 bp,报道了最小的遗传表达载体。这是通过使用带有整合转录终止子的最小H1启动子来实现的,该转录终止子转录了哑铃环周围的RNA发夹结构。使用新型方案以高转化率产生了此类载体。最小化表达shRNA的哑铃表现出加速的传递和转录动力学,从而导致人类组织培养细胞中的基因沉默增强。与质粒和miRNA模拟物相比,在原代人T细胞中,最小化表达miRNA的哑铃表现出更高的稳定性,并触发了更强的靶基因抑制作用。与对照哑铃或质粒相比,通过实施内含子和SV40增强子,哑铃驱动的基因表达可提高56倍或160倍。先进的哑铃载体可能代表着一种选择,可以弥合持久整合病毒载体与裸露RNA触发的短期效应之间的持久表达。

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