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首页> 外文期刊>Protein Expression and Purification >Screening Colonies of Pooled ORFeomes (SCOOP): A rapid and efficient strategy for expression screening ORFeomes in Escherichia coli
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Screening Colonies of Pooled ORFeomes (SCOOP): A rapid and efficient strategy for expression screening ORFeomes in Escherichia coli

机译:筛选混合ORFeomes(SCOOP)的菌落:一种快速,有效的策略来筛选大肠杆菌中的ORFeomes表达

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We have designed and evaluated a novel strategy for screening large gene collections available as GATEWAY-adapted ORFeomes for soluble recombinant overexpression in Escherichia coli, called "Screening Colonies of ORFeome Pools" (SCOOP). From a large gene collection we could, without expensive multi-well based cloning and expression screening, determine which targets were suitable for large-scale expression and purification. Normalized bacterial overnight cultures of an ORF collection of entry clones derived from the Kaposi's sarcoma associated herpesvirus (KSHV) were pooled and used for the isolation of plasmid DNA. The resulting ORF library was subcloned into a prokaryotic expression vector in a single recombination reaction and was subsequently screened with the colony filtration (CoFi) blot for soluble recombinant overexpression in E. coli. ORFs determined to express soluble recombinant proteins were identified by sequencing and analysed by small-scale IMAC and SDS-PAGE. As a reference, we subcloned all ORFs individually using a traditional multi-well based procedure and screened them for soluble expression. Our results show that the two processes have a similar efficiency as 23 and 25 out of 74 assessable clones were identified as soluble expressers using SCOOP and the traditional multi-well procedure, respectively. Because SCOOP minimises costs for cloning and expression screening, it constitutes an interesting alternative for establishing expression of large gene collections. SCOOP also allows affordable screening in alternative vectors, expression strains and physical conditions, which is challenging in large-scale protein production programs. With this strategy in hand success rates for future proteome-wide protein production efforts can be significantly increased.
机译:我们设计并评估了一种新的策略,用于筛选大基因集合(可作为适合于网关的ORFeomes在大肠杆菌中进行可溶性重组过表达的GATEWAY适配),称为“筛选ORFeome库的菌落”(SCOOP)。从庞大的基因集合中,我们无需昂贵的基于多孔的克隆和表达筛选,就可以确定哪些靶标适合大规模表达和纯化。汇集源自卡波西氏肉瘤相关疱疹病毒(KSHV)的进入克隆的ORF集合的标准化细菌过夜培养物,并用于分离质粒DNA。在单个重组反应中,将得到的ORF文库亚克隆到原核表达载体中,然后通过菌落过滤(CoFi)印迹筛选可溶重组重组蛋白在大肠杆菌中的过表达。通过测序鉴定确定表达可溶重组蛋白的ORF,并通过小规模IMAC和SDS-PAGE分析。作为参考,我们使用传统的基于多孔的方法分别亚克隆了所有ORF,并筛选了它们的可溶性表达。我们的结果表明,这两种方法的效率相似,分别使用SCOOP和传统多孔方法将74个可评估克隆中的23个和25个鉴定为可溶性表达体。由于SCOOP将克隆和表达筛选的成本降至最低,因此它是建立大型基因集合表达的有趣替代方法。 SCOOP还允许在替代载体,表达菌株和物理条件下进行可承受的筛选,这在大规模蛋白质生产计划中具有挑战性。借助这种策略,可以大大提高未来蛋白质组蛋白生产的成功率。

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