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一种基于酵母重组的克隆系统,用于产生嵌合HIV-1病毒并表达HIV-1基因。

A yeast recombination-based cloning system to produce chimeric HIV-1 viruses and express HIV-1 genes.

作者信息

Moore Dawn M, Arts Eric J, Gao Yong, Marozsan Andre J

机构信息

Molecular and Cellular Biology Program, Department of Molecular Biology and Microbiology, Case Western Reserve University, Cleveland, OH, USA.

出版信息

Methods Mol Biol. 2005;304:369-85. doi: 10.1385/1-59259-907-9:369.

Abstract

Differential phenotypes or properties of HIV-1 gene products in primary virus isolates are difficult to assess due to interference by the high degree of sequence variation across the entire genome. Thus, chimeric viruses provide a powerful tool to study the function of single gene products or genetic elements in the context of a neutral viral genomic backbone. In this chapter, we describe how to produce HIV-1 chimeric viruses utilizing a yeast-based homologous recombination cloning technique to insert env sequences first into a yeast cloning vector and then into the common pNL4-3 virus backbone. This technique is not limited to the env gene, but can be used to build chimeric viruses with any HIV-1 gene or genetic element. This cloning technique involves the use of a shuttle vector that can replicate in yeast and bacterial cells. Along with acting as a shuttle vector for subsequent subcloning into pNL4-3, this construct pRec/env can also be used to express to the env gene product, gp120/gp41, on the surface of mammalian cells. The chimeric viruses produced by this cloning method are capable of undergoing multiple rounds of replication and are therefore very useful to study drug sensitivity, coreceptor usage, and viral fitness as influenced by a single gene or gene fragment of a primary HIV-1 isolate from any group M subtype.

摘要

由于整个基因组中高度的序列变异产生干扰,原发性病毒分离株中HIV-1基因产物的差异表型或特性难以评估。因此,嵌合病毒为在中性病毒基因组骨架背景下研究单个基因产物或遗传元件的功能提供了一个强大的工具。在本章中,我们描述了如何利用基于酵母的同源重组克隆技术来生产HIV-1嵌合病毒,该技术先将env序列插入酵母克隆载体,然后再插入常见的pNL4-3病毒骨架。该技术不仅限于env基因,还可用于构建含有任何HIV-1基因或遗传元件的嵌合病毒。这种克隆技术涉及使用一种能在酵母和细菌细胞中复制的穿梭载体。除了作为后续亚克隆到pNL4-3中的穿梭载体外,这个构建体pRec/env还可用于在哺乳动物细胞表面表达env基因产物gp120/gp41。通过这种克隆方法产生的嵌合病毒能够进行多轮复制,因此对于研究药物敏感性、共受体使用情况以及受任何M组亚型原发性HIV-1分离株的单个基因或基因片段影响的病毒适应性非常有用。

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