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Inverted Terminal Repeat Sequences Are Important for Intermolecular Recombination and Circularization of Adeno-Associated Virus Genomes

机译:反向末端重复序列对腺相关病毒基因组的分子间重组和环化很重要。

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摘要

The relatively small package capacity (less than 5 kb) of adeno-associated virus (AAV) vectors has been effectively doubled with the development of dual-vector heterodimerization approaches. However, the efficiency of such dual-vector systems is limited not only by the extent to which intermolecular recombination occurs between two independent vector genomes, but also by the directional bias required for successful transgene reconstitution following concatemerization. In the present study, we sought to evaluate the mechanisms by which inverted terminal repeat (ITR) sequences mediate intermolecular recombination of AAV genomes, with the goal of engineering more efficient vectors for dual-vector trans-splicing approaches. To this end, we generated a novel AAV hybrid-ITR vector characterized by an AAV-2 and an AAV-5 ITR at opposite ends of the viral genome. This hybrid genome was efficiently packaged into either AAV-2 or AAV-5 capsids to generate infectious virions. Hybrid AV2:5 ITR viruses had a significantly lower capacity to form circular intermediates in infected cells than homologous AV2:2 and AV5:5 ITR vectors despite their similar capacity to express an encoded enhanced green fluorescent protein (EGFP) transgene. To examine whether the divergent ITR sequences contained within hybrid AV2:5 ITR vectors could direct intermolecular recombination in a tail-to-head fashion, we generated two hybrid ITR trans-splicing vectors (AV5:2LacZdonor and AV2:5LacZacceptor). Each delivered one exon of a β-galactosidase minigene flanked by donor or acceptor splice sequences. These hybrid trans-splicing vectors were compared to homologous AV5:5 and AV2:2 trans-splicing vector sets for their ability to reconstitute β-galactosidase gene expression. Results from this comparison demonstrated that hybrid ITR dual-vector sets had a significantly enhanced trans-splicing efficiency (6- to 10-fold, depending on the capsid serotype) compared to homologous ITR vectors. Molecular studies of viral genome structures suggest that hybrid ITR vectors provide more efficient directional recombination due to an increased abundance of linear-form genomes. These studies provide direct evidence for the importance of ITR sequences in directing intermolecular and intramolecular homologous recombination of AAV genomes. The use of hybrid ITR AAV vector genomes provides new strategies to manipulate viral genome conversion products and to direct intermolecular recombination events required for efficient dual-AAV vector reconstitution of the transgene.
机译:随着双载体异源二聚化方法的发展,腺相关病毒(AAV)载体相对较小的包装容量(小于5 kb)已有效地翻了一番。但是,这种双载体系统的效率不仅受到两个独立的载体基因组之间分子间重组发生的程度的限制,而且还受到串联后成功进行转基因重组所需的方向性的限制。在本研究中,我们寻求评估反向末端重复(ITR)序列介导AAV基因组的分子间重组的机制,目的是为双载体转拼方法设计更有效的载体。为此,我们产生了新颖的AAV杂种-ITR载体,其特征在于在病毒基因组的相对末端的AAV-2和AAV-5 ITR。该杂种基因组被有效地包装到AAV-2或AAV-5衣壳中,以产生感染性病毒粒子。尽管同源AV2:5 ITR病毒表达编码的增强型绿色荧光蛋白(EGFP)转基因的能力相似,但与同源AV2:2和AV5:5 ITR病毒相比,在感染细胞中形成环状中间体的能力要低得多。为了检查杂交AV2:5 ITR载体中包含的不同ITR序列是否可以以尾对头的方式指导分子间重组,我们生成了两个杂交ITR转拼载体(AV5:2LacZdonor和AV2:5LacZacceptor)。每个递送一个β-半乳糖苷酶小基因的外显子,其侧翼是供体或受体剪接序列。将这些杂合反式剪接载体与同源AV5:5和AV2:2反式剪接载体组相比,它们具有重构β-半乳糖苷酶基因表达的能力。该比较的结果表明,与同源ITR载体相比,杂种ITR双载体组具有显着增强的反式剪接效率(6到10倍,取决于衣壳血清型)。病毒基因组结构的分子研究表明,由于线性形式基因组的丰度增加,杂交ITR载体可提供更有效的方向重组。这些研究为ITR序列在指导AAV基因组的分子间和分子内同源重组中的重要性提供了直接的证据。杂种ITR AAV载体基因组的使用提供了新的策略来操纵病毒基因组转化产物,并指导有效的双AAV载体转基因重组所需的分子间重组事件。

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