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MAR-mediated integration of plasmid vectors for in vivo gene transfer and regulation

机译:MAR介导的质粒载体整合,用于体内基因转移和调控

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The in vivo transfer of naked plasmid DNA into organs such as muscles is commonly used to assess the expression of prophylactic or therapeutic genes in animal disease models. In this study, we devised vectors allowing a tight regulation of transgene expression in mice from such non-viral vectors using a doxycycline-controlled network of activator and repressor proteins. Using these vectors, we demonstrate proper physiological response as consequence of the induced expression of two therapeutically relevant proteins, namely erythropoietin and utrophin. Kinetic studies showed that the induction of transgene expression was only transient, unless epigenetic regulatory elements termed Matrix Attachment Regions, or MAR, were inserted upstream of the regulated promoters. Using episomal plasmid rescue and quantitative PCR assays, we observed that similar amounts of plasmids remained in muscles after electrotransfer with or without MAR elements, but that a significant portion had integrated into the muscle fiber chromosomes. Interestingly, the MAR elements were found to promote plasmid genomic integration but to oppose silencing effects in vivo, thereby mediating long-term expression. This study thus elucidates some of the determinants of transient or sustained expression from the use of non-viral regulated vectors in vivo.
机译:裸质粒DNA体内转移到器官例如肌肉中通常用于评估动物疾病模型中预防或治疗基因的表达。在这项研究中,我们设计了载体,可以使用强力霉素控制的激活剂和阻遏蛋白网络,从这类非病毒载体中严格调控小鼠的转基因表达。使用这些载体,我们证明了适当的生理反应是两种治疗相关蛋白即促红细胞生成素和促卵磷脂的诱导表达的结果。动力学研究表明,除非被称为基质附着区或MAR的表观遗传调控元件插入调控启动子的上游,否则转基因表达的诱导只是短暂的。使用游离质粒拯救和定量PCR分析法,我们观察到,无论有无MAR元素电转移后,肌肉中仍残留相似量的质粒,但其中很大一部分已整合到肌肉纤维染色体中。有趣的是,发现MAR元件可促进质粒基因组整合,但可对抗体内的沉默效应,从而介导长期表达。因此,这项研究阐明了体内非病毒调控载体的使用引起瞬时或持续表达的一些决定因素。

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