Ling Zhenhua, Tran Kim C, Arnold Jamie J, Teng Michael N
Graduate Program in Biochemistry, Microbiology, and Molecular Biology, Pennsylvania State University, University Park, PA 16802, USA.
Protein Expr Purif. 2008 Feb;57(2):261-70. doi: 10.1016/j.pep.2007.09.017. Epub 2007 Oct 1.
We report here the first biochemical and structural characterization of the respiratory syncytial virus (RSV) NS1 protein. We have used a pET-ubiquitin expression system to produce respiratory syncytial virus (RSV) NS1 protein in E. coli that contains a hexahistidine-tag on either the amino- or carboxyl-terminus (His(6)-NS1 and NS1-His(6), respectively). We have been able to isolate milligram quantities of highly purified His(6)-NS1 and NS1-His(6) by nickel affinity chromatography. Generation of recombinant RSV indicated that addition of the hexahistidine tag to the C-terminus of NS1 slightly decreased viral replication competence whereas addition of the tag to the N-terminus had no observable effect. Therefore, we performed a comprehensive biochemical and biophysical characterization on His(6)-NS1. His(6)-NS1 is monodisperse in solution as determined by dynamic light scattering analysis. Both gel filtration and analytical ultracentrifugation showed that His(6)-NS1 is predominantly a monomer. In agreement with theoretical predictions, circular dichroism spectroscopy showed that His(6)-NS1 contains 21% alpha-helices, 34% beta-sheets, and 45% undefined structure. Immunization with purified His(6)-NS1 generated an antiserum that specifically recognizes NS1 by immunoprecipitation from HEp-2 cells infected by RSV, indicating that His(6)-NS1 resembles native NS1. The availability of purified RSV NS1 will permit biochemical and structural investigations providing insight into the function of NS1 in viral replication and interferon antagonism.
我们在此报告呼吸道合胞病毒(RSV)NS1蛋白的首次生化及结构特征。我们使用了pET-泛素表达系统在大肠杆菌中生产呼吸道合胞病毒(RSV)NS1蛋白,该蛋白在氨基端或羧基端含有一个六组氨酸标签(分别为His(6)-NS1和NS1-His(6))。我们能够通过镍亲和层析分离出毫克量的高度纯化的His(6)-NS1和NS1-His(6)。重组RSV的产生表明,在NS1的C端添加六组氨酸标签会略微降低病毒复制能力,而在N端添加该标签则没有可观察到的影响。因此,我们对His(6)-NS1进行了全面的生化和生物物理表征。通过动态光散射分析确定,His(6)-NS1在溶液中是单分散的。凝胶过滤和分析超速离心均表明,His(6)-NS1主要是单体。与理论预测一致,圆二色光谱显示His(6)-NS1含有21%的α螺旋、34%的β折叠和45%的未定义结构。用纯化的His(6)-NS1免疫产生了一种抗血清,该抗血清通过从感染RSV的HEp-2细胞中免疫沉淀来特异性识别NS1,这表明His(6)-NS1类似于天然NS1。纯化的RSV NS1的可得性将允许进行生化和结构研究,从而深入了解NS1在病毒复制和干扰素拮抗中的功能。