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一种用于从人细胞中生产分泌蛋白的便捷通用表达平台。

A convenient and general expression platform for the production of secreted proteins from human cells.

作者信息

Aydin Halil, Azimi Farshad C, Cook Jonathan D, Lee Jeffrey E

机构信息

Department of Laboratory Medicine and Pathobiology, University of Toronto.

出版信息

J Vis Exp. 2012 Jul 31(65):4041. doi: 10.3791/4041.

Abstract

Recombinant protein expression in bacteria, typically E. coli, has been the most successful strategy for milligram quantity expression of proteins. However, prokaryotic hosts are often not as appropriate for expression of human, viral or eukaryotic proteins due to toxicity of the foreign macromolecule, differences in the protein folding machinery, or due to the lack of particular co- or post-translational modifications in bacteria. Expression systems based on yeast (P. pastoris or S. cerevisiae) (1,2), baculovirus-infected insect (S. frugiperda or T. ni) cells (3), and cell-free in vitro translation systems (2,4) have been successfully used to produce mammalian proteins. Intuitively, the best match is to use a mammalian host to ensure the production of recombinant proteins that contain the proper post-translational modifications. A number of mammalian cell lines (Human Embryonic Kidney (HEK) 293, CV-1 cells in Origin carrying the SV40 larget T-antigen (COS), Chinese Hamster Ovary (CHO), and others) have been successfully utilized to overexpress milligram quantities of a number of human proteins (5-9). However, the advantages of using mammalian cells are often countered by higher costs, requirement of specialized laboratory equipment, lower protein yields, and lengthy times to develop stable expression cell lines. Increasing yield and producing proteins faster, while keeping costs low, are major factors for many academic and commercial laboratories. Here, we describe a time- and cost-efficient, two-part procedure for the expression of secreted human proteins from adherent HEK 293T cells. This system is capable of producing microgram to milligram quantities of functional protein for structural, biophysical and biochemical studies. The first part, multiple constructs of the gene of interest are produced in parallel and transiently transfected into adherent HEK 293T cells in small scale. The detection and analysis of recombinant protein secreted into the cell culture medium is performed by western blot analysis using commercially available antibodies directed against a vector-encoded protein purification tag. Subsequently, suitable constructs for large-scale protein production are transiently transfected using polyethyleneimine (PEI) in 10-layer cell factories. Proteins secreted into litre-volumes of conditioned medium are concentrated into manageable amounts using tangential flow filtration, followed by purification by anti-HA affinity chromatography. The utility of this platform is proven by its ability to express milligram quantities of cytokines, cytokine receptors, cell surface receptors, intrinsic restriction factors, and viral glycoproteins. This method was also successfully used in the structural determination of the trimeric ebolavirus glycoprotein (5,10). In conclusion, this platform offers ease of use, speed and scalability while maximizing protein quality and functionality. Moreover, no additional equipment, other than a standard humidified CO2 incubator, is required. This procedure may be rapidly expanded to systems of greater complexity, such as co-expression of protein complexes, antigens and antibodies, production of virus-like particles for vaccines, or production of adenoviruses or lentiviruses for transduction of difficult cell lines.

摘要

在细菌(通常是大肠杆菌)中进行重组蛋白表达,一直是实现毫克级蛋白表达的最成功策略。然而,由于外源大分子的毒性、蛋白质折叠机制的差异,或者细菌中缺乏特定的共翻译或翻译后修饰,原核宿主通常不太适合表达人类、病毒或真核蛋白。基于酵母(巴斯德毕赤酵母或酿酒酵母)(1,2)、杆状病毒感染的昆虫(草地贪夜蛾或粉纹夜蛾)细胞(3)以及无细胞体外翻译系统(2,4)的表达系统已成功用于生产哺乳动物蛋白。直观地说,最佳选择是使用哺乳动物宿主来确保产生含有适当翻译后修饰的重组蛋白。许多哺乳动物细胞系(人胚肾(HEK)293、携带SV40大T抗原的起源CV-1细胞(COS)、中国仓鼠卵巢(CHO)细胞等)已成功用于大量表达多种人类蛋白(5-9)。然而,使用哺乳动物细胞的优势常常被更高的成本、对专业实验室设备的要求、较低的蛋白产量以及开发稳定表达细胞系的漫长时间所抵消。提高产量、更快地生产蛋白同时保持低成本,是许多学术和商业实验室的主要考量因素。在这里,我们描述了一种省时且经济高效的两步法,用于从贴壁的HEK 293T细胞中表达分泌型人类蛋白。该系统能够产生微克到毫克级的功能性蛋白,用于结构、生物物理和生化研究。第一步,将多个感兴趣基因的构建体并行制备,并小规模瞬时转染到贴壁的HEK 293T细胞中。使用针对载体编码的蛋白纯化标签的市售抗体,通过蛋白质印迹分析对分泌到细胞培养基中的重组蛋白进行检测和分析。随后,使用聚乙烯亚胺(PEI)在10层细胞工厂中对适合大规模蛋白生产的构建体进行瞬时转染。使用切向流过滤将分泌到升体积条件培养基中的蛋白浓缩到可管理的量,然后通过抗HA亲和层析进行纯化。该平台能够表达毫克级的细胞因子、细胞因子受体、细胞表面受体、内在限制因子和病毒糖蛋白,从而证明了其效用。该方法还成功用于三聚体埃博拉病毒糖蛋白的结构测定(5,10)。总之,该平台操作简便、速度快且可扩展,同时最大限度地提高了蛋白质量和功能。此外,除了标准的加湿二氧化碳培养箱外,无需其他额外设备。该方法可以迅速扩展到更复杂的系统,如蛋白复合物、抗原和抗体的共表达、用于疫苗的病毒样颗粒的生产,或用于转导难转染细胞系的腺病毒或慢病毒的生产。

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