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表达多个外源基因的复制型重组轮状病毒的生成策略。

Strategy for generation of replication-competent recombinant rotaviruses expressing multiple foreign genes.

机构信息

Department of Molecular Laboratory Medicine, Clinical Laboratory Medicine, Fujita Health University Graduate School of Health Sciences, Toyoake, Aichi 470-1192, Japan.

Department of Virology and Parasitology, Fujita Health University School of Medicine, Toyoake, Aichi 470-1192, Japan.

出版信息

J Gen Virol. 2021 Apr;102(4). doi: 10.1099/jgv.0.001587.

Abstract

With the recent establishment of robust reverse genetics systems for rotavirus, rotavirus is being developed as a vector to express foreign genes. However, insertion of larger sequences such as those encoding multiple foreign genes into the rotavirus genome has been challenging because the virus segments are small. In this paper, we attempted to insert multiple foreign genes into a single gene segment of rotavirus to determine whether it can efficiently express multiple exogenous genes from its genome. At first, we engineered a truncated NSP1 segment platform lacking most of the NSP1 open reading frame and including a self-cleaving 2A sequence (2A), which made it possible to generate a recombinant rotavirus stably expressing NanoLuc (Nluc) luciferase as a model foreign gene. Based on this approach, we then demonstrated the generation of a replication-competent recombinant rotavirus expressing three reporter genes (Nluc, EGFP, and mCherry) by separating them with self-cleaving 2As, indicating the capacity of rotaviruses as to the insertion of multiple foreign genes. Importantly, the inserted multiple foreign genes remained genetically stable during serial passages in cell culture, indicating the potential of rotaviruses as attractive expression vectors. The strategy described here will serve as a model for the generation of rotavirus-based vectors designed for the expression and/or delivery of multiple foreign genes.

摘要

随着轮状病毒强大的反向遗传学系统的最近建立,轮状病毒被开发为表达外源基因的载体。然而,由于病毒片段较小,将更大的序列(如编码多个外源基因的序列)插入轮状病毒基因组一直具有挑战性。在本文中,我们试图将多个外源基因插入轮状病毒的单个基因片段中,以确定它是否能够从其基因组中有效表达多个外源基因。首先,我们构建了一个缺少大多数 NSP1 开放阅读框并包含自我切割 2A 序列(2A)的截断 NSP1 片段平台,这使得稳定表达 NanoLuc(Nluc)荧光素酶的重组轮状病毒成为可能作为一个模型外源基因。基于这种方法,我们随后通过使用自我切割 2A 来分离它们,证明了能够产生复制能力的重组轮状病毒,该病毒表达三种报告基因(Nluc、EGFP 和 mCherry),这表明轮状病毒有能力插入多个外源基因。重要的是,插入的多个外源基因在细胞培养中的连续传代过程中保持遗传稳定,表明轮状病毒作为有吸引力的表达载体的潜力。这里描述的策略将作为用于表达和/或递送多个外源基因的基于轮状病毒载体的生成模型。

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