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自我修复的松鼠猴疱疹病毒缺失变异株。

Self-Repairing Herpesvirus Saimiri Deletion Variants.

机构信息

Institute for Infection Medicine, Christian-Albrecht University of Kiel, University Medical Center Schleswig-Holstein, Brunswiker Str. 4, 24105 Kiel, Germany.

出版信息

Viruses. 2022 Jul 13;14(7):1525. doi: 10.3390/v14071525.

Abstract

Herpesvirus saimiri (HVS) is discussed as a possible vector in gene therapy. In order to create a self-repairing HVS vector, the F plasmid vector moiety of the bacterial artificial chromosome (BAC) was transposed via Red recombination into the virus genes or , both important for virus replication. Repetitive sequences were additionally inserted, allowing the removal of the F-derived sequences from the viral DNA genome upon reconstitution in permissive epithelial cells. Moreover, these self-repair-enabled BACs were used to generate deletion variants of the transforming strain C488 in order to minimalize the virus genome. Using the mutagenesis with two subsequent homologous recombination steps, the BAC was seamlessly manipulated. To ensure the replication capacity in permissive monkey cells, replication kinetics for all generated virus variants were documented. HVS variants with increased insert capacity reached the self-repair within two to three passages in permissive epithelial cells. The seamless deletion of , , did not abolish replication competence. Apoptosis induction did not seem to be altered in human T cells transformed with deletion variants lacking or . These virus variants form an important step towards creating a potential minimal virus vector for gene therapy, for example, in human T cells.

摘要

猴疱疹病毒(HVS)被认为是基因治疗中的一种潜在载体。为了构建可自我修复的 HVS 载体,通过 Red 重组将细菌人工染色体(BAC)的 F 质粒载体部分转位到病毒基因 或 中,这两个基因对于病毒复制都很重要。此外,还插入了重复序列,允许在允许的上皮细胞中重新构成时从病毒 DNA 基因组中去除 F 衍生序列。此外,还使用这些自我修复的 BAC 来生成转化株 C488 的缺失变体,以最小化病毒基因组。通过使用两次随后的同源重组步骤进行诱变,无缝操纵 BAC。为了确保在允许的猴细胞中具有复制能力,记录了所有生成的病毒变体的复制动力学。具有增加的插入容量的 HVS 变体在允许的上皮细胞中经过两到三传代即可达到自我修复。 , 的无缝缺失并未消除复制能力。在缺失 或 的缺失变体转化的人 T 细胞中,凋亡诱导似乎没有改变。这些病毒变体为创建用于基因治疗的潜在最小病毒载体迈出了重要一步,例如在人 T 细胞中。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/accb/9320899/1af3190836dd/viruses-14-01525-g001.jpg

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