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自动诱导质粒的开发用于重组蛋白生产。

Development of an Autoinducible Plasmid for Recombinant Protein Production.

机构信息

Department of Chemistry, Sejong University, 209 Neungdong-Ro, Gwangjin-Gu, Seoul 05006, Korea.

出版信息

Protein Pept Lett. 2021;28(12):1398-1407. doi: 10.2174/0929866528666211105113750.

Abstract

BACKGROUND

The production of recombinant proteins in E. coli involves such factors as host strains, expression vectors, culture media, and induction methods. The typical procedure to produce heterologous proteins consists of the following: (1) insertion of the target gene into a suitable vector to construct an overexpression plasmid, (2) transformation of a strain specialized for protein production with the constructed plasmid DNA, (3) growth of the host in a suitable medium and induction of the protein production at a right moment, and (4) further growth to get the maximum yield. There are hurdles involved in each of these steps, and researchers have developed many materials or methods, which often require special recipes or procedures.

OBJECTIVE

To eliminate the special requirements for recombinant protein production by using readily available materials. Also to save time and effort in the routine protein production work.

METHODS

We started with a vector capable of producing a target protein fused to the C-terminus of the maltose-binding protein (MBP). The mCherry (red fluorescent protein) gene was fused to MBP. It acted as a reporter in the initial screening procedure. The original lethal gene (barnase) was replaced with sacB. We chose 3 stationary phase promoters and made hybrids of them by mixing halves from each one. The T5 promoter was replaced with these stationary phase promoters or their hybrids. The best plasmid was selected by the color intensity of the cell pellet. MBP and GST genes were inserted in the place of sacB, and their production yields were compared with the original plasmid in the conventional way of expression.

RESULTS

We constructed an expression plasmid with an autoinducible promoter working in a host that was not specially designed for protein production and in a TB medium that did not contain any secret ingredient, nor was it difficult to prepare unlike Studier's defined medium. This plasmid also contains a color indicator that turns red when protein production is successful. We tested our system with the maltose-binding protein (MBP) and the glutathione S-transferase (GST), and showed that both proteins were produced to a level comparable to what the commercial medium and/or the specialized strain yielded.

CONCLUSION

We developed a plasmid equipped with an autoinducible promoter, a hybrid of the two promoters which were activated at the stationary phase. This plasmid does not need a special E. coli strain nor a sophisticated nor an expensive medium. It produces an intense red (or pink) color, which can be used as an indicator of a successful production of the target protein and as a predictive measure of the amount of the produced target protein. We speculate that this plasmid will have its greatest advantage when growing cells at low temperatures, which would inevitably take a long time.

摘要

背景

在大肠杆菌中生产重组蛋白涉及宿主菌株、表达载体、培养基和诱导方法等因素。生产异源蛋白的典型步骤包括:(1)将目的基因插入合适的载体中,构建过表达质粒,(2)用构建的质粒 DNA 转化专门用于蛋白质生产的菌株,(3)在合适的培养基中培养宿主,并在适当的时机诱导蛋白质的生产,(4)进一步生长以获得最大产量。这些步骤中的每一步都存在障碍,研究人员已经开发了许多材料或方法,这些方法往往需要特殊的配方或程序。

目的

利用易得的材料消除重组蛋白生产的特殊要求,同时节省常规蛋白生产工作中的时间和精力。

方法

我们从能够产生融合到麦芽糖结合蛋白(MBP)C 末端的靶蛋白的载体开始。mCherry(红色荧光蛋白)基因与 MBP 融合,在初始筛选过程中充当报告基因。原始致死基因( barnase )被 sacB 取代。我们选择了 3 个静止期启动子,并通过混合每个启动子的一半来制作它们的杂种。T5 启动子被这些静止期启动子或它们的杂种取代。通过细胞沉淀的颜色强度选择最佳质粒。MBP 和 GST 基因被插入 sacB 的位置,并以传统的表达方式比较它们与原始质粒的产量。

结果

我们构建了一个带有自动诱导启动子的表达质粒,该质粒在非专门设计用于蛋白质生产的宿主和 TB 培养基中工作,该培养基不含任何秘密成分,也不难制备,不像 Studier 的定义培养基。该质粒还包含一个颜色指示剂,当蛋白质生产成功时,它会变成红色。我们用麦芽糖结合蛋白(MBP)和谷胱甘肽 S-转移酶(GST)测试了我们的系统,结果表明,这两种蛋白质的产量都与商业培养基和/或专门的菌株相当。

结论

我们开发了一种带有自动诱导启动子的质粒,该启动子是由两个在静止期被激活的启动子的杂种组成。该质粒不需要特殊的大肠杆菌菌株,也不需要复杂或昂贵的培养基。它产生强烈的红色(或粉红色),可作为目标蛋白生产成功的指示剂,并可作为目标蛋白产生量的预测指标。我们推测,当在低温下培养细胞时,这种质粒将具有最大的优势,因为这不可避免地需要很长时间。

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