Salas Eliseo, Keung Nicholas, Chen Zhenhang, Gao Yunrong, Cao Dongdong, Liang Bo
Department of Biochemistry, Emory University School of Medicine, Atlanta, GA, USA.
Methods Mol Biol. 2025;2948:137-157. doi: 10.1007/978-1-0716-4666-3_10.
Recombinant protein expression and purification are crucial for studying pathogen-host interactions, especially in therapeutic contexts. This chapter comprehensively overviews various expression systems and chromatography techniques to express and purify respiratory syncytial virus (RSV) proteins. These proteins include nonstructural protein 1 (NS1), nonstructural protein 2 (NS2), nucleoprotein (N), phosphoprotein (P), matrix protein (M), M2-1 protein, M2-2 protein, and the large RNA-dependent RNA polymerase protein (L). Choosing an appropriate expression system, such as bacterial E coli cells or insect cells, is critical for protein expression and will depend on the specific size and properties of the particular protein. Chromatography is a common technique in protein purification that leverages the protein's binding affinity, charge, hydrophobicity, or size, but it often requires significant optimization. We outline the protocol for expressing RSV proteins and detail the purification procedures using affinity chromatography, ion exchange chromatography, and size exclusion chromatography to achieve optimal purification of these RSV proteins.
重组蛋白的表达和纯化对于研究病原体与宿主的相互作用至关重要,尤其是在治疗领域。本章全面概述了用于表达和纯化呼吸道合胞病毒(RSV)蛋白的各种表达系统和色谱技术。这些蛋白包括非结构蛋白1(NS1)、非结构蛋白2(NS2)、核蛋白(N)、磷蛋白(P)、基质蛋白(M)、M2-1蛋白、M2-2蛋白以及大型RNA依赖性RNA聚合酶蛋白(L)。选择合适的表达系统,如大肠杆菌细胞或昆虫细胞,对于蛋白表达至关重要,这将取决于特定蛋白的具体大小和性质。色谱法是蛋白纯化中的常用技术,它利用蛋白的结合亲和力、电荷、疏水性或大小,但通常需要进行大量优化。我们概述了表达RSV蛋白的方案,并详细介绍了使用亲和色谱、离子交换色谱和尺寸排阻色谱的纯化程序,以实现这些RSV蛋白的最佳纯化。