Eshaghi Said, Hedrén Marie, Nasser Marina Ignatushchenko Abdel, Hammarberg Tove, Thornell Anders, Nordlund Pär
Department of Biochemistry and Biophysics, Stockholm University, Roslagstullsbacken 15, Albanova University Center, SE-114 21 Stockholm, Sweden.
Protein Sci. 2005 Mar;14(3):676-83. doi: 10.1110/ps.041127005. Epub 2005 Feb 2.
The recombinant expression of integral membrane proteins is considered a major challenge, and together with the crystallization step, the major hurdle toward routine structure determination of membrane proteins. Basic methodologies for high-throughput (HTP) expression optimization of soluble proteins have recently emerged, providing statistically significant success rates for producing such proteins. Experimental procedures for handling integral membrane proteins are generally more challenging, and there have been no previous comprehensive reports of HTP technology for membrane protein production. Here, we present a generic and integrated parallel HTP strategy for cloning and expression screening of membrane proteins in their detergent solubilized form. Based on this strategy, we provide overall success rates for membrane protein production in Escherichia coli, as well as initial benchmarking statistics of parameters such as expression vectors, strains, and solubilizing detergents. The technologies were applied to 49 E. coli integral membrane proteins with human homologs and revealed that 71% of these proteins could be produced at sufficient levels to allow milligram amounts of protein to be relatively easily purified, which is a significantly higher success rate than anticipated. We attribute the high success rate to the quality and robustness of the methodology used, and to introducing multiple parameters such as different vectors, strains, and detergents. The presented strategy demonstrates the usefulness of HTP technologies for membrane protein production, and the feasibility of large-scale programs for elucidation of structure and function of bacterial integral membrane proteins.
整合膜蛋白的重组表达被认为是一项重大挑战,并且与结晶步骤一起,是膜蛋白常规结构测定的主要障碍。最近出现了用于可溶性蛋白高通量(HTP)表达优化的基本方法,为生产此类蛋白提供了具有统计学意义的成功率。处理整合膜蛋白的实验程序通常更具挑战性,并且以前没有关于膜蛋白生产的HTP技术的全面报道。在这里,我们提出了一种通用的、集成的平行HTP策略,用于以去污剂溶解形式对膜蛋白进行克隆和表达筛选。基于该策略,我们提供了大肠杆菌中膜蛋白生产的总体成功率,以及表达载体、菌株和增溶去污剂等参数的初步基准统计数据。该技术应用于49种具有人类同源物的大肠杆菌整合膜蛋白,结果表明,其中71%的蛋白能够以足够的水平产生,从而能够相对容易地纯化出毫克量的蛋白,这一成功率显著高于预期。我们将高成功率归因于所使用方法的质量和稳健性,以及引入了多种参数,如不同的载体、菌株和去污剂。所提出的策略证明了HTP技术在膜蛋白生产中的有用性,以及大规模阐明细菌整合膜蛋白结构和功能计划的可行性。