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用于在大肠杆菌中同时表达稀有转运RNA(tRNA)和HIV-1 nef基因的载体的工程构建与验证

Engineering and Validation of a Vector for Concomitant Expression of Rare Transfer RNA (tRNA) and HIV-1 nef Genes in Escherichia coli.

作者信息

Mualif Siti Aisyah, Teow Sin-Yeang, Omar Tasyriq Che, Chew Yik Wei, Yusoff Narazah Mohd, Ali Syed A

机构信息

Oncological and Radiological Sciences, Advanced Medical and Dental Institute, Universiti Sains Malaysia, Pulau Pinang, Malaysia.

Regenerative Medicine, Advanced Medical and Dental Institute, Universiti Sains Malaysia, Pulau Pinang, Malaysia.

出版信息

PLoS One. 2015 Jul 6;10(7):e0130446. doi: 10.1371/journal.pone.0130446. eCollection 2015.

Abstract

Relative ease in handling and manipulation of Escherichia coli strains make them primary candidate to express proteins heterologously. Overexpression of heterologous genes that contain codons infrequently used by E. coli is related with difficulties such as mRNA instability, early termination of transcription and/or translation, deletions and/or misincorporation, and cell growth inhibition. These codon bias -associated problems are addressed by co-expressing ColE1-compatible, rare tRNA expressing helper plasmids. However, this approach has inadequacies, which we have addressed by engineering an expression vector that concomitantly expresses the heterologous protein of interest, and rare tRNA genes in E. coli. The expression vector contains three (argU, ileY, leuW) rare tRNA genes and a useful multiple cloning site for easy in-frame cloning. To maintain the overall size of the parental plasmid vector, the rare tRNA genes replaced the non-essential DNA segments in the vector. The cloned gene is expressed under the control of T7 promoter and resulting recombinant protein has a C-terminal 6His tag for IMAC-mediated purification. We have evaluated the usefulness of this expression vector by expressing three HIV-1 genes namely HIV-1 p27 (nef), HIV-1 p24 (ca), and HIV-1 vif in NiCo21(DE3) E.coli and demonstrated the advantages of using expression vector that concomitantly expresses rare tRNA and heterologous genes.

摘要

大肠杆菌菌株易于处理和操作,这使其成为异源表达蛋白质的主要候选对象。含有大肠杆菌不常用密码子的异源基因的过表达会带来一些困难,如mRNA不稳定、转录和/或翻译提前终止、缺失和/或错配以及细胞生长抑制。通过共表达与ColE1兼容的、表达稀有tRNA的辅助质粒,可以解决这些与密码子偏好相关的问题。然而,这种方法存在不足,我们通过构建一种表达载体来解决这一问题,该载体能在大肠杆菌中同时表达目标异源蛋白和稀有tRNA基因。该表达载体包含三个(argU、ileY、leuW)稀有tRNA基因和一个有用的多克隆位点,便于进行读框内克隆。为了保持亲本质粒载体的整体大小,稀有tRNA基因取代了载体中的非必需DNA片段。克隆基因在T7启动子的控制下表达,产生的重组蛋白具有C端6His标签,用于IMAC介导的纯化。我们通过在NiCo21(DE3)大肠杆菌中表达三个HIV-1基因,即HIV-1 p27(nef)、HIV-1 p24(ca)和HIV-1 vif,评估了这种表达载体的实用性,并证明了使用能同时表达稀有tRNA和异源基因的表达载体的优势。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5496/4492947/1f3e11b81658/pone.0130446.g001.jpg

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