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首页> 外文期刊>Current gene therapy >The history of the HSV amplicon: from naturally occurring defective genomes to engineered amplicon vectors.
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The history of the HSV amplicon: from naturally occurring defective genomes to engineered amplicon vectors.

机译:HSV扩增子的历史:从天然缺陷基因组到工程扩增子载体。

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摘要

We have derived the HSV amplicon vector in 1981/1982 after elaborate experience with "defective viruses", arising spontaneously in viral stocks propagated at high multiplicities of infection (m.o.i.). The defective viruses were found to contain large concatemeric genomes with repeat units of limited complexity. We employed cloned defective genome repeats to generate the "amplicon" vectors, which in the presence of helper virus replicate to produce packaged large concatemeric genomes, transmissible to uninfected cells. The cloned amplicons were then employed to fine map and analyze the signals essential for amplicon propagation: (i) A DNA replication origin, producing concatemeric genomes by rolling circle replication. Three DNA replication origins were identified in the HSV genome. (ii) Signals termed pac-1 and pac-2, directing a measuring function for coordinate cleavage of the concatemeric genomes and their packaging as full-size (150 kb) genomes. Using amplicons, foreign genes of large sizes could be linked to less than 1 kb of the cis-acting HSV DNA sequences and become amplified in packaged defective genomes, transmissible to new cells. The transgenes are expressed efficiently, due to sequence reiterations. Large quantities of vectors can be produced in vitro. The amplicons are attractive vectors for use as non-integrating gene delivery vectors. The packaging signals pac-1 and pac-2 are well conserved in different herpesviruses and amplicons with a DNA replication origin and cleavage and packaging signals have been produced in additional herpesviruses. Depending on amplicon-host cell combination, the vectors can be employed with and without mutated helper virus(es) to obtain high gene expression, and desired effect on the target cell. In the absence of helper virus, the defective virus produced is limited for spread in the targeted cells. We expect that new vectors employing state of the art transgenes, will be developed to generate amplicon based concatemeric defective viruses capable of efficient expression of these genes.
机译:我们在1981/1982年获得了HSV扩增子载体,经过对“缺陷病毒”的精心设计,这些病毒是在感染率高(m.o.i.)繁殖的病毒原种中自发产生的。发现缺陷病毒包含大串连体基因组,其重复单元的复杂性有限。我们使用克隆的有缺陷的基因组重复序列来生成“扩增子”载体,该载体在辅助病毒存在下复制以产生包装的大串联体基因组,这些基因组可传播给未感染的细胞。然后将克隆的扩增子用于精细定位和分析扩增子繁殖必不可少的信号:(i)DNA复制起点,通过滚环复制产生串联体基因组。 HSV基因组中鉴定出三个DNA复制起点。 (ii)被称为pac-1和pac-2的信号,指导测量功能以协调切割连体基因组及其作为完整(150 kb)基因组的包装。使用扩增子,可以将大尺寸的外源基因与少于1 kb的顺式HSV DNA序列连接,并在包装​​的缺陷基因组中扩增,并可以传给新细胞。由于序列重复,转基因被有效表达。可以在体外产生大量载体。扩增子是用作非整合基因递送载体的有吸引力的载体。包装信号pac-1和pac-2在不同的疱疹病毒和具有DNA复制起点的扩增子中保存良好,并且在其他疱疹病毒中产生了切割和包装信号。取决于扩增子-宿主细胞的组合,可以在有或没有突变的辅助病毒的情况下使用载体以获得高基因表达和对靶细胞的期望效果。在没有辅助病毒的情况下,产生的缺陷病毒在靶细胞中的传播受到限制。我们期望将开发使用最新转基因技术的新载体,以产生能够有效表达这些基因的基于扩增子的级联缺陷病毒。

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