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Vector Insert-Targeted Integrative Antisense Expression System for Plasmid Stabilization

机译:载体稳定的针对载体插入物的整合反义表达系统

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Some DNA vaccine and gene therapy vector-encoded transgenes are toxic to the E. coli plasmid production host resulting in poor production yields. For plasmid products undergoing clinical evaluation, sequence modification to eliminate toxicity is undesirable because an altered vector is a new chemical entity. We hypothesized that: (1) insert-encoded toxicity is mediated by unintended expression of a toxic insert-encoded protein from spurious bacterial promoters; and (2) that toxicity could be eliminated with antisense RNA-mediated translation inhibition. We developed the pINT PR PL vector, a chromosomally integrable RNA expression vector, and utilized it to express insert-complementary (anti-insert) RNA from a single defined site in the bacterial chromosome. Anti-insert RNA eliminated leaky fluorescent protein expression from a target plasmid. A toxic retroviral gag pol helper plasmid produced in a gag pol anti-insert strain had fourfold improved plasmid fermentation yields. Plasmid fermentation yields were also fourfold improved when a DNA vaccine plasmid containing a toxic Influenza serotype H1 hemagglutinin transgene was grown in an H1 sense strand anti-insert production strain, suggesting that in this case toxicity was mediated by an antisense alternative reading frame-encoded peptide. This anti-insert chromosomal RNA expression technology is a general approach to improve production yields with plasmid-based vectors that encode toxic transgenes, or toxic alternative frame peptides.
机译:一些DNA疫苗和基因治疗载体编码的转基因对大肠杆菌质粒生产宿主有毒,导致产量低下。对于正在进行临床评估的质粒产品,不希望通过序列修饰消除毒性,因为改变的载体是一种新的化学实体。我们假设:(1)插入编码的毒性是由假细菌启动子意外表达的有毒插入编码蛋白介导的; (2)通过反义RNA介导的翻译抑制可以消除毒性。我们开发了pINT PR PL载体,一种染色体可整合的RNA表达载体,并利用它从细菌染色体中的单个定义位点表达插入互补(抗插入)RNA。抗插入RNA消除了目标质粒的荧光蛋白泄漏。在gag pol抗插入菌株中产生的毒性逆转录病毒gag pol辅助质粒具有提高的四倍的质粒发酵产率。当在H1有义链反插入生产菌株中生长包含有毒的H1血型H1血凝素转基因的DNA疫苗质粒时,质粒发酵产量也提高了四倍,这表明在这种情况下,毒性是由反义替代阅读框编码的肽介导的。这种抗插入染色体RNA表达技术是一种通用的方法,可利用编码毒性转基因或毒性替代框架肽的基于质粒的载体提高产量。

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