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Chromosomal Integration Pattern of a Helper-Dependent Minimal Adenovirus Vector with a Selectable Marker Inserted into a 27.4-Kilobase Genomic Stuffer

机译:辅助依赖的最小腺病毒载体与27.4千碱基基因组填充物中插入的选择性标记的染色体整合模式。

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摘要

Helper-dependent minimal adenovirus vectors are promising tools for gene transfer and therapy because of their high capacity and the absence of immunostimulatory or cytotoxic viral genes. In order to characterize this new vector system with respect to its integrative properties, the integration pattern of a minimal adenovirus vector with a neor gene inserted centrally into a noncoding 27.4-kb genomic stuffer element derived from the human X chromosome after infection of a sex chromosome aneuploid (X0) human glioblastoma cell line was studied. Our results indicate that even extensive homologies and abundant chromosomal repeat elements present in the vector did not lead to integration of the vector via homologous or homology-mediated mechanisms. Instead, integration occurred primarily by insertion of a monomer with no or little loss of sequences at the vector ends, apparently at random sites, which is very similar to E1 deletion adenovirus vectors. It is therefore unlikely that the incorporation of stuffer elements derived from human genomic DNA, which were shown to allow long-term transgene expression in vivo in a number of studies, leads to an enhanced risk of insertional mutagenesis. Furthermore, our findings indicate that the potential of minimal adenovirus vectors as tools for targeted insertion and gene targeting is limited despite the possibility of incorporating long stretches of homologous sequences. However, we found an enhanced efficiency of stable neor transduction of the minimal adenovirus vector compared to an E1 deletion adenovirus vector, possibly caused by the absence of potential growth-inhibitory viral genes. Complete integration of the vector and tolerance of the integrated vector sequences by the cell might indicate a potential use of these vectors as tools for stable transfer of (large) genes.
机译:依赖辅助基因的最小型腺病毒载体因其高容量以及不存在免疫刺激或细胞毒性病毒基因而成为有前景的基因转移和治疗工具。为了表征这种新载体系统的整合特性,将具有neo r 基因的最小腺病毒载体的整合模式集中插入非人类编码的27.4 kb基因组填充元件中研究了性染色体非整倍性(X0)人胶质母细胞瘤细胞系感染后的X染色体。我们的结果表明,即使载体中存在广泛的同源性和丰富的染色体重复元件,也不会通过同源或同源介导的机制导致载体整合。相反,整合主要是通过在载体末端,显然在随机位点插入没有或几乎没有序列损失的单体而发生的,这与E1缺失腺病毒载体非常相似。因此,掺入衍生自人类基因组DNA的填充元素不太可能导致插入诱变的风险增加,这些填充元素在许多研究中均显示其可在体内长期表达,从而导致体内诱变的风险增加。此外,我们的发现表明,尽管可能掺入长序列的同源序列,但最小限度的腺病毒载体作为靶向插入和基因靶向工具的潜力受到了限制。然而,我们发现与E1缺失腺病毒载体相比,最小腺病毒载体稳定的neo r 转导效率提高了,这可能是由于缺乏潜在的抑制生长的病毒基因引起的。载体的完全整合和细胞对整合的载体序列的耐受性可能表明这些载体作为稳定转移(大)基因的工具的潜在用途。

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