CRISPR-Cas9 expressed in stably transduced cell lines promotes recombination and selects for herpes simplex virus recombinants

Hyung Suk Oh, Fernando M. Diaz , Changhong Zhou, Nicholas Carpenter, David M. Knipe
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引用次数: 2

Abstract

Recombinant herpes simplex virus strains can be constructed by several methods, including homologous recombination, bacterial artificial chromosome manipulation, and yeast genetic methods. Homologous recombination may have the advantage of introducing fewer genetic alterations in the viral genome, but the low level of recombinants can make this method more time consuming if there is no screen or selection. In this study we used complementing cell lines that express Cas9 and guide RNAs targeting the parental virus to rapidly generate recombinant viruses. Analysis of the progeny viruses indicated that CRISPR-Cas9 both promoted recombination to increase recombinant viruses and selected against parental viruses in the transfection progeny viruses. This approach can also be used to enrich for recombinants made by any of the current methods.

Abstract Image

在稳定转导的细胞系中表达的CRISPR-Cas9促进重组并选择单纯疱疹病毒重组
重组单纯疱疹病毒株可通过多种方法构建,包括同源重组、细菌人工染色体操作和酵母遗传方法。同源重组可能具有在病毒基因组中引入较少遗传改变的优点,但如果没有筛选或选择,低水平的重组会使该方法更加耗时。在这项研究中,我们使用表达Cas9的互补细胞系和靶向亲本病毒的引导rna来快速生成重组病毒。对子代病毒的分析表明,在转染子代病毒中,CRISPR-Cas9既促进重组增加重组病毒,又对亲本病毒进行选择。这种方法也可用于富集由任何现有方法制备的重组体。
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