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工程菌株SuptoxD和SuptoxR中重组膜蛋白生产的优化

Optimization of Recombinant Membrane Protein Production in the Engineered Strains SuptoxD and SuptoxR.

作者信息

Michou Myrsini, Kapsalis Charalampos, Pliotas Christos, Skretas Georgios

机构信息

Institute of Chemical Biology , National Hellenic Research Foundation , Athens 11635 , Greece.

Department of Biochemistry and Biotechnology , University of Thessaly, Viopolis , Larisa 41500 , Greece.

出版信息

ACS Synth Biol. 2019 Jul 19;8(7):1631-1641. doi: 10.1021/acssynbio.9b00120. Epub 2019 Jun 25.

Abstract

Membrane proteins (MPs) execute a wide variety of critical biological functions in all living organisms and constitute approximately half of current targets for drug discovery. As in the case of soluble proteins, the bacterium has served as a very popular overexpression host for biochemical/structural studies of membrane proteins as well. Bacterial recombinant membrane protein production, however, is typically hampered by poor cellular accumulation and severe toxicity for the host, which leads to low levels of final biomass and minute volumetric yields. In previous work, we generated the engineered strains SuptoxD and SuptoxR, which upon coexpression of the effector genes or , respectively, can suppress the cytotoxicity caused by MP overexpression and produce enhanced MP yields. Here, we systematically looked for gene overexpression and culturing conditions that maximize the accumulation of membrane-integrated and well-folded recombinant MPs in these strains. We have found that, under optimal conditions, SuptoxD and SuptoxR achieve greatly enhanced recombinant production for a variety of MP, irrespective of their archaeal, eubacterial, or eukaryotic origin. Furthermore, we demonstrate that the use of these engineered strains enables the production of well-folded recombinant MPs of high quality and at high yields, which are suitable for functional and structural studies. We anticipate that SuptoxD and SuptoxR will become broadly utilized expression hosts for recombinant MP production in bacteria.

摘要

膜蛋白(MPs)在所有生物体中执行多种关键的生物学功能,并且约占当前药物研发靶点的一半。与可溶性蛋白的情况一样,细菌也已成为用于膜蛋白生化/结构研究的非常受欢迎的过表达宿主。然而,细菌重组膜蛋白的生产通常受到细胞积累不佳和对宿主具有严重毒性的阻碍,这导致最终生物量水平较低且体积产量微小。在先前的工作中,我们构建了工程化的菌株SuptoxD和SuptoxR,它们分别在共表达效应基因或时,可以抑制MP过表达引起的细胞毒性并提高MP产量。在这里,我们系统地寻找基因过表达和培养条件,以最大化这些菌株中膜整合且折叠良好的重组MPs的积累。我们发现,在最佳条件下,SuptoxD和SuptoxR对于多种MP都能实现大幅提高的重组产量,无论其起源是古细菌、真细菌还是真核生物。此外,我们证明使用这些工程菌株能够高质量、高产量地生产折叠良好的重组MPs,这些MPs适用于功能和结构研究。我们预计SuptoxD和SuptoxR将广泛用作细菌中重组MP生产的表达宿主。

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