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RNA based plasmid selection system for antibiotic-free DNA vaccine vector production

机译:基于RNA的抗生素DNA疫苗载体的质粒选择系统

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Antibiotic resistance markers, typically kanamycin resistance (kanR), allow selective retention of plasmid DNA during bacterial fermentation and are the most commonly utilized selectable markers. However, to ensure safety, regulatory agencies recommend elimination of antibiotic resistance markers from therapeutic and vaccine plasmid DNA vectors. The presence of an antibiotic resistance gene in the plasmid backbone is considered undesirable by regulatory agencies, due to: 1) the potential transfer of antibiotic resistance to endogenous microbial flora; and 2) the potential activation and transcription of the genes from mammalian promoters after cellular incorporation into the genome. Here, we describe the development and application of a novel antibiotic-free (AF) selection system {Fig. 1}. Vectors with this selection system (Fig. 4) incorporate and express a 150 bp RNA-OUT antisense RNA. RNA-OUT represses expression of a counter-selectable marker (SacB) from the host chromosome. SacB encodes a levansucrase, which is toxic in the presence of sucrose. Sucrose selectable DNA vaccine vectors combine antibiotic-free selection with highly productive fermentation manufacturing (>1 g/L plasmid DNA yields; Table 1, 3), while improving in vivo expression of encoded proteins (Fig. 3). The RNA-OUT selectable marker can be used to retrofit existing kanR DNA vaccine plasmids into antibiotic-free vectors. Interestingly, a minimum vector size for high yield production of small plasmids is reported. These vectors are safer, more potent, alternatives for DNA therapy or vaccination.
机译:抗生素抗性标志物,通常是卡那霉素抗性(KANR),允许在细菌发酵过程中选择性保留质粒DNA,并且是最常用的选择标记。但是,为了确保安全,监管机构建议消除来自治疗性和疫苗质粒DNA载体的抗生素抗性标志物。由于:1):1):1)对质粒骨架中的抗生素抗性基因在质粒骨架中的存在不希望:1)抗生素抗性对内源性微生物菌群的潜在转移; 2)在细胞掺入基因组后,哺乳动物启动子的潜在激活和转录。在这里,我们描述了一种新的抗生素 - 自由(AF)选择系统{图1的开发和应用。 1}。具有该选择系统的载体(图4)掺入并表达150bp RNA输出的反义RNA。 RNA-OUT从宿主染色体中抑制反选择标记物(SACB)的表达。 SACB编码左苏苏酶,在蔗糖存在下有毒。蔗糖可选择的DNA疫苗载体将无生物选择与高生产率的发酵制造(> 1g / l质粒DNA产率;表1,3)组合,同时改善了编码蛋白的体内表达(图3)。 RNA-Out可选标记可用于将现有的KANR DNA疫苗质粒改装成免抗生素的载体。有趣的是,报道了高产小质粒的高产率产生的最小载体尺寸。这些载体更安全,更有效,DNA治疗或疫苗接种的替代方案。

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