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细小病毒 B19 的功能性小基因组。

A Functional Minigenome of Parvovirus B19.

机构信息

Department of Pharmacy and Biotechnology, University of Bologna, 40138 Bologna, Italy.

出版信息

Viruses. 2022 Jan 4;14(1):84. doi: 10.3390/v14010084.

Abstract

Parvovirus B19 (B19V) is a human pathogenic virus of clinical relevance, characterized by a selective tropism for erythroid progenitor cells in bone marrow. Relevant information on viral characteristics and lifecycle can be obtained from experiments involving engineered genetic systems in appropriate in vitro cellular models. Previously, a B19V genome of defined consensus sequence was designed, synthesized and cloned in a complete and functional form, able to replicate and produce infectious viral particles in a producer/amplifier cell system. Based on such a system, we have now designed and produced a derived B19V minigenome, reduced to a replicon unit. The genome terminal regions were maintained in a form able to sustain viral replication, while the internal region was clipped to include only the left-side genetic set, containing the coding sequence for the functional NS1 protein. Following transfection in UT7/EpoS1 cells, this minigenome still proved competent for replication, transcription and production of NS1 protein. Further, the B19V minigenome was able to complement B19-derived, NS1-defective genomes, restoring their ability to express viral capsid proteins. The B19V genome was thus engineered to yield a two-component system, with complementing functions, providing a valuable tool for studying viral expression and genetics, suitable to further engineering for purposes of translational research.

摘要

细小病毒 B19(B19V)是一种具有临床相关性的人类致病病毒,其特征是对骨髓中红系祖细胞具有选择性嗜性。有关病毒特征和生命周期的相关信息可以通过在适当的体外细胞模型中使用工程遗传系统的实验获得。此前,我们设计、合成并以完整且功能形式克隆了具有明确共识序列的 B19V 基因组,该基因组能够在产生/扩增细胞系统中复制并产生感染性病毒颗粒。基于这样的系统,我们现在设计并产生了一种衍生的 B19V 小基因组,减少到一个复制子单位。基因组末端区域以能够维持病毒复制的形式保留,而内部区域被剪切成仅包含左侧遗传单元,其中包含功能性 NS1 蛋白的编码序列。在 UT7/EpoS1 细胞中转染后,该小基因组仍然能够进行复制、转录和 NS1 蛋白的产生。此外,B19V 小基因组能够补充 NS1 缺失的 B19 衍生基因组,恢复其表达病毒衣壳蛋白的能力。因此,我们对 B19V 基因组进行了工程改造,产生了一个具有互补功能的双组分系统,为研究病毒表达和遗传学提供了有价值的工具,适用于进一步进行转化研究的工程改造。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/54ac/8780457/fff6f4abb26d/viruses-14-00084-g001.jpg

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