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A novel strategy to over-express and purify homologous proteins from Streptococcus pneumoniae

机译:从肺炎链球菌中过表达和纯化同源蛋白的新策略

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Functional studies of Streptococcus pneumoniae virulence factors are facilitated by the development of complementation/mutagenesis systems. These methods usually result in poor expression yields; therefore, biochemical and structural/functional characterizations are mostly performed with proteins expressed and purified from heterologous systems (e.g. Escherichia coil). However, heterologous expression does not guarantee correct protein structure and function. In this work, we developed a method to over-express and purify homologous proteins from S. pneumoniae. The system relies on the combined use of the shuttle plasmid pMU1328 and a natural constitutive pneumococcal promoter, P. Efficient over-expression of secreted, membrane or surface anchored proteins, either wild type or mutant, was achieved. As proof of principle the S. pneumoniae pilus-1 backbone RrgB was successfully purified as a His-tag secreted protein (RrgB-His_SP) from pneumococcal culture supernatants. N-terminal sequencing and mass spectrometry analysis of RrgB-His_SP allowed the determination of the leader sequence cleavage site in pneumococcus, while proteolysis studies confirmed the stability of RrgB-His_SP to trypsin digestion. The data presented here support the use of this novel homologous expression method for all S. pneumoniae proteins for which extensive characterization studies are planned. Moreover, given the promiscuity of the pMU1328 replicon, this system could be used in diverse bacterial species. (C) 2011 Elsevier B.V. All rights reserved.
机译:互补/诱变系统的发展促进了肺炎链球菌毒力因子的功能研究。这些方法通常导致较差的表达量。因此,生化和结构/功能表征主要是用从异源系统(例如大肠杆菌)表达和纯化的蛋白质进行的。但是,异源表达不能保证正确的蛋白质结构和功能。在这项工作中,我们开发了一种从肺炎链球菌中过表达和纯化同源蛋白的方法。该系统依赖于穿梭质粒pMU1328和天然组成型肺炎球菌启动子P的组合使用。实现了分泌型,膜型或表面锚定蛋白(野生型或突变型)的高效过表达。作为原理的证明,从肺炎球菌培养物上清液中成功纯化了肺炎链球菌菌毛1骨架RrgB,作为His标签分泌蛋白(RrgB-His_SP)。 RrgB-His_SP的N端测序和质谱分析可以确定肺炎球菌中的前导序列切割位点,而蛋白水解研究则证实了RrgB-His_SP对胰蛋白酶消化的稳定性。此处提供的数据支持针对计划进行广泛表征研究的所有肺炎链球菌蛋白使用这种新颖的同源表达方法。此外,鉴于pMU1328复制子的混杂,该系统可用于多种细菌。 (C)2011 Elsevier B.V.保留所有权利。

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