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利用两步系统提高重组蛋白在[具体表达体系未明确]中的溶解度和表达产量。

Improvement of solubility and yield of recombinant protein expression in using a two-step system.

作者信息

Sadeghian-Rizi Tahereh, Ebrahimi Azade, Moazzen Fatemeh, Yousefian Hesam, Jahanian-Najafabadi Ali

机构信息

Department of Pharmaceutical Biotechnology, School of Pharmacy and Pharmaceutical Sciences, Isfahan University of Medical Sciences, Isfahan, I.R. Iran.

Student Research Committee, School of Pharmacy and Pharmaceutical Sciences, Isfahan University of Medical Sciences, Isfahan, I.R. Iran.

出版信息

Res Pharm Sci. 2019 Oct 4;14(5):400-407. doi: 10.4103/1735-5362.268200. eCollection 2019 Oct.

Abstract

Overexpression of recombinant proteins in results in inclusion body formation, and consequently decreased production yield and increased production cost. Co-expression of chaperon systems accompanied by recombinant protein is a general method to increase the production yield. However, it has not been successful enough due to imposed intense stress to the host cells. The aim of this study was to balance the rate of protein production and the imposed cellular stresses using a two-step expression system. For this purpose, in the first step, green fluorescent protein (GFP) was expressed as a recombinant protein model under control of the T7-TetO artificial promoter-operator, accompanied by Dnak/J/GrpE chaperon system. Then, in the next step, TetR repressor was activated automatically under the control of the stress promoter ibpAB and suppressed the GFP production after accumulation of inclusion bodies. Thus in this step incorrect folded proteins and inclusion bodies are refolded causing increased yield and solubility of the recombinant protein and restarting GFP expression again. Total GFP, soluble and insoluble GFP fractions, were measured by Synergy H1 multiple reader. Results showed that expression yield and soluble/insoluble ratio of GFP have been increased 5 and 2.5 times using this system in comparison with the single step process, respectively. The efficiency of this system in increasing solubility and production yield of recombinant proteins was confirmed. The two-step system must be evaluated for expression of various proteins to further confirm its applicability in the field of recombinant protein production.

摘要

重组蛋白在[具体内容缺失]中的过表达会导致包涵体形成,从而降低产量并增加生产成本。伴随重组蛋白共表达伴侣系统是提高产量的常用方法。然而,由于对宿主细胞施加了强烈压力,该方法尚未取得足够成功。本研究的目的是使用两步表达系统来平衡蛋白质生产速率和施加的细胞压力。为此,在第一步中,绿色荧光蛋白(GFP)作为重组蛋白模型在T7 - TetO人工启动子 - 操纵子的控制下表达,同时伴有Dnak/J/GrpE伴侣系统。然后,在下一步中,TetR阻遏物在应激启动子ibpAB的控制下自动激活,并在包涵体积聚后抑制GFP的产生。因此,在这一步中,错误折叠的蛋白质和包涵体会被重新折叠,从而提高重组蛋白的产量和溶解度,并再次重新启动GFP表达。通过Synergy H1多功能读数仪测量总GFP、可溶性和不溶性GFP组分。结果表明,与单步过程相比,使用该系统GFP的表达产量和可溶性/不溶性比率分别提高了5倍和2.5倍。该系统在提高重组蛋白溶解度和产量方面的效率得到了证实。必须对两步系统进行各种蛋白质表达的评估,以进一步确认其在重组蛋白生产领域的适用性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f454/6827196/ae0e5d555bf3/RPS-14-400-g001.jpg

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