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基于CRISPR/Cas9介导的基因组编辑构建及优化用于中枢神经系统基因递送的单纯疱疹病毒载体

Construction and Optimization of Herpes Simplex Virus Vectors for Central Nervous System Gene Delivery based on CRISPR/Cas9-mediated Genome Editing.

作者信息

Huang Xinwei, Li Xiuqing, Yang Lijuan, Wang Pengfei, Yan Jingyuan, Nie Zuqing, Gao Yingzheng, Li Zhiwei, Wen Jie, Cao Xia

机构信息

Key Laboratory of The Second Affiliated Hospital of Kuming Medical College, Kunming, 650101, China.

Key Laboratory of The Second Affiliated Hospital of Kuming Medical College, Kunming, 650101, China | Jinan Central Hospital, Jinan, Shandong, 50013, China.

出版信息

Curr Gene Ther. 2022;22(1):66-77. doi: 10.2174/1566523219666210618154326.

Abstract

AIMS

We aim to define parameters that affect the safety and long-term transgene expression of attenuated HSV-1 vectors and optimize the expression cassettes to achieve robust and sustained expression in CNS.

BACKGROUND

Engineered, attenuated Herpes Simplex Virus (HSV) vectors are promising vehicles for gene delivery to the peripheral and central nervous systems. The virus latent promoter (LAP) is commonly used to drive exogenous gene expression; however, parameters affecting the safety and longterm transgene expression of attenuated HSV-1 vectors have not been fully understood.

OBJECTIVE

The study aimed at using CRISPR-Cas9 system to construct attenuated HSV-1 vectors and examine the influence of transgene cassette construction and insertion site on transgene expression and vector safety.

METHODS

In this study, we used a CRISPR-Cas9 system to accurately and efficiently edit attenuated HSV-1 strain 1716, and construct two series of recombinant virus LMR and LMRx with different sets of gene cassettes insertion in Exon1(LAP2) and 2.0 kb intron downstream of LAP, respectively. The transgene expression and viral gene transcriptional kinetics were compared in in vitro cell lines. The reporter gene expression and safety profiles of each vector were further evaluated in mouse hippocampus gene transduction model.

RESULTS

The in vitro cell line analysis indicated that the insertion of a gene expression cassette would disrupt virus gene transcription. Mouse hippocampus transducing analysis suggested that complete expression cassette insertion at 2.0 kb intron could achieve robust and longtime gene expression than the other constructs. Recombinants with gene expression cassettes lacking Poly (A) induced significant neuronal inflammation due to persistent viral antigen expression and microglia activation.

CONCLUSION

Our results indicated that the integrity of LAT transcripts was not necessary for establishment of long-term latent expression. Exogenous strong promoters (like cBh promoter) could remain active during latency when placed in Exon1 or 2.0 Kb Intron of LAT locus, although their transcriptional activity declined with time. Consistent with previous research, the foreign gene expression would last much longer when the gene cassette was located downstream of Exon1, which suggested a role of LAP2 in maintaining promoter activity during latency. Besides, over-transcription of the downstream part of LAT may induce continuous activation of the attenuated vectors, which suggests an important role of LAT in maintaining viral reactivation potential.

摘要

目的

我们旨在确定影响减毒单纯疱疹病毒1型(HSV-1)载体安全性和长期转基因表达的参数,并优化表达盒以在中枢神经系统(CNS)中实现强大且持续的表达。

背景

工程化减毒单纯疱疹病毒(HSV)载体是用于向周围和中枢神经系统进行基因递送的有前景的载体。病毒潜伏启动子(LAP)通常用于驱动外源基因表达;然而,影响减毒HSV-1载体安全性和长期转基因表达的参数尚未完全了解。

目的

本研究旨在使用CRISPR-Cas9系统构建减毒HSV-1载体,并研究转基因盒构建和插入位点对转基因表达和载体安全性的影响。

方法

在本研究中,我们使用CRISPR-Cas9系统准确且高效地编辑减毒HSV-1毒株1716,并分别构建了两组重组病毒LMR和LMRx,其基因盒分别插入外显子1(LAP2)和LAP下游2.0 kb内含子中。在体外细胞系中比较转基因表达和病毒基因转录动力学。在小鼠海马基因转导模型中进一步评估每个载体的报告基因表达和安全性概况。

结果

体外细胞系分析表明,基因表达盒的插入会破坏病毒基因转录。小鼠海马转导分析表明,在2.0 kb内含子处完整插入表达盒比其他构建体能够实现更强且更持久的基因表达。缺乏聚腺苷酸(Poly (A))的基因表达盒的重组体由于持续的病毒抗原表达和小胶质细胞激活而诱导显著的神经元炎症。

结论

我们的结果表明,LAT转录本的完整性对于建立长期潜伏表达并非必需。当置于LAT基因座的外显子1或2.0 Kb内含子中时,外源强启动子(如cBh启动子)在潜伏期间可保持活性,尽管其转录活性会随时间下降。与先前的研究一致,当基因盒位于外显子1下游时,外源基因表达会持续更长时间,这表明LAP2在潜伏期间维持启动子活性中起作用。此外,LAT下游部分的过度转录可能诱导减毒载体的持续激活,这表明LAT在维持病毒再激活潜能中起重要作用。

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