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高通量定量表达筛选与纯化应用于大肠杆菌中产生的富含二硫键的重组毒液蛋白。

High throughput quantitative expression screening and purification applied to recombinant disulfide-rich venom proteins produced in E. coli.

作者信息

Saez Natalie J, Nozach Hervé, Blemont Marilyne, Vincentelli Renaud

机构信息

Architecture et Fonction des Macromolécules Biologiques (AFMB), Aix-Marseille Université

iBiTec-S, Service d'Ingénierie Moléculaire des Protéines (SIMOPRO), Commissariat à l'énergie atomique et aux énergies alternatives (CEA) Saclay, France.

出版信息

J Vis Exp. 2014 Jul 30(89):e51464. doi: 10.3791/51464.

Abstract

Escherichia coli (E. coli) is the most widely used expression system for the production of recombinant proteins for structural and functional studies. However, purifying proteins is sometimes challenging since many proteins are expressed in an insoluble form. When working with difficult or multiple targets it is therefore recommended to use high throughput (HTP) protein expression screening on a small scale (1-4 ml cultures) to quickly identify conditions for soluble expression. To cope with the various structural genomics programs of the lab, a quantitative (within a range of 0.1-100 mg/L culture of recombinant protein) and HTP protein expression screening protocol was implemented and validated on thousands of proteins. The protocols were automated with the use of a liquid handling robot but can also be performed manually without specialized equipment. Disulfide-rich venom proteins are gaining increasing recognition for their potential as therapeutic drug leads. They can be highly potent and selective, but their complex disulfide bond networks make them challenging to produce. As a member of the FP7 European Venomics project (www.venomics.eu), our challenge is to develop successful production strategies with the aim of producing thousands of novel venom proteins for functional characterization. Aided by the redox properties of disulfide bond isomerase DsbC, we adapted our HTP production pipeline for the expression of oxidized, functional venom peptides in the E. coli cytoplasm. The protocols are also applicable to the production of diverse disulfide-rich proteins. Here we demonstrate our pipeline applied to the production of animal venom proteins. With the protocols described herein it is likely that soluble disulfide-rich proteins will be obtained in as little as a week. Even from a small scale, there is the potential to use the purified proteins for validating the oxidation state by mass spectrometry, for characterization in pilot studies, or for sensitive micro-assays.

摘要

大肠杆菌(E. coli)是用于生产重组蛋白以进行结构和功能研究的最广泛使用的表达系统。然而,由于许多蛋白以不溶性形式表达,纯化蛋白有时具有挑战性。因此,当处理困难或多个目标时,建议在小规模(1 - 4毫升培养物)上进行高通量(HTP)蛋白表达筛选,以快速确定可溶性表达的条件。为了应对实验室的各种结构基因组学项目,实施了一种定量(重组蛋白浓度范围为0.1 - 100毫克/升培养物)的高通量蛋白表达筛选方案,并在数千种蛋白上进行了验证。该方案使用液体处理机器人实现了自动化,但也可以在没有专门设备的情况下手动执行。富含二硫键的毒液蛋白作为治疗药物先导物的潜力越来越受到认可。它们可能具有高效力和选择性,但复杂的二硫键网络使其生产具有挑战性。作为欧盟第七框架计划(FP7)毒液组学项目(www.venomics.eu)的成员,我们面临的挑战是制定成功的生产策略,目标是生产数千种新型毒液蛋白以进行功能表征。借助二硫键异构酶DsbC的氧化还原特性,我们调整了高通量生产流程,以在大肠杆菌细胞质中表达氧化的、具有功能的毒液肽。这些方案也适用于生产各种富含二硫键的蛋白。在这里,我们展示了我们的流程应用于动物毒液蛋白的生产。使用本文所述的方案,有可能在短短一周内获得可溶性富含二硫键的蛋白。即使从小规模开始,也有可能使用纯化的蛋白通过质谱法验证氧化态,用于初步研究中的表征,或用于灵敏的微量分析。

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