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High throughput creation of recombinant adenovirus vectors by direct cloning, green-white selection and I-Sce I-mediated rescue of circular adenovirus plasmids in 293 cells.

机译:通过直接克隆,绿白选择和I-Sce I介导的环状腺病毒质粒在293细胞中的拯救,高通量创建重组腺病毒载体。

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摘要

Ability of replication-defective adenovirus vectors to achieve efficient gene transfer in most of the mammalian cell types makes them useful vehicles for many gene transfer applications, including their use in assessing gene function. High throughput creation of recombinant adenovirus becomes a critical path to the expanding utility of adenovirus vector technology. Here, we report a process in which recombinant adenovirus vectors are isolated as single molecular clones through a convenient direct cloning and green-white selection procedure, and directly transfected into 293 cells where virus is rescued through an enzymatic reaction mediated by an intron-encoding rare endonuclease I-Sce I. This process of enzymatic rescue of circular molecular clones was at least 10-fold more efficient than that using linearized clones for transfection. This method will facilitate a high throughput creation of vectors as required for screening gene function.
机译:复制缺陷型腺病毒载体在大多数哺乳动物细胞类型中实现有效基因转移的能力使其成为许多基因转移应用(包括其在评估基因功能中的用途)的有用载体。重组腺病毒的高通量创建成为扩大腺病毒载体技术效用的关键途径。在这里,我们报告了一个过程,其中重组腺病毒载体通过便捷的直接克隆和绿白选择程序分离为单分子克隆,并直接转染到293细胞中,通过内含子编码的介导的酶促反应挽救了病毒内切酶I-SceI。这种酶解环状分子克隆的过程比使用线性化克隆进行转染的效率至少高10倍。该方法将有助于筛选基因功能所需的高通量载体的产生。

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