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首页> 外文期刊>Journal of Laboratory Automation >Cost-Effective High-Throughput Fully Automated Construction of a Multiplex Library of Mutagenized Open Reading Frames for an Insecticidal Peptide Using a Plasmid-Based Functional Proteomic Robotic Workcell with Improved Vacuum System
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Cost-Effective High-Throughput Fully Automated Construction of a Multiplex Library of Mutagenized Open Reading Frames for an Insecticidal Peptide Using a Plasmid-Based Functional Proteomic Robotic Workcell with Improved Vacuum System

机译:具有成本效益的高通量全自动构建基于质粒的功能蛋白质组学机器人工作单元,具有改进的真空系统,可用于杀虫肽诱变的开放阅读框多重文库的构建

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摘要

Robotic platforms are essential for production of large numbers of expression-ready plasmid sets to develop optimized clones and improved microbial strains for crucial bioenergy applications and simultaneous high-value peptide expression. Here we demonstrate a plasmid-based integrated robotic workcell, modified with a motorized vacuum filtration system, for performing fully automated molecular biology protocols, including assembly of mutagenized gene sequences, purification of PCR amplicons, ligation of PCR products into vectors, transformation of competent Escherichia coli, plating of recovered transformants, plasmid preparation, cloning, and expression of optimized genes. A library of genes encoding variants of wolf spider lycotoxin-1, a candidate bioinsecticide, was produced using PCR mutagenesis in an amino acid scanning strategy to generate a complete set of mutations across the lycotoxin-1 gene. The improved vacuum filtration system permits automated purification of PCR products. Methods for recovery and growth of bacteria containing plasmids with PCR inserts allow individual colony formation on a novel solid medium in a deepwell plate. Inserts are cloned into a bacterial vector to verify expression. These protocols form the core of a fully automated molecular biology platform that reduces the cost and time required to perform all operations.
机译:机器人平台对于生产大量表达就绪的质粒集至关重要,以开发出优化的克隆和改良的微生物菌株,用于关键的生物能源应用以及同时的高价值肽表达。在这里,我们展示了一个基于质粒的集成机器人工作单元,该机器人工作单元经过了电动真空过滤系统的改造,可以执行全自动的分子生物学协议,包括诱变的基因序列的组装,PCR扩增子的纯化,PCR产物与载体的连接,感受态大肠杆菌的转化大肠杆菌,回收的转化子的铺板,质粒制备,克隆和优化基因的表达。在氨基酸扫描策略中使用PCR诱变产生了编码狼蛛lycotoxin-1(一种候选生物杀虫剂)的变体的基因文库,以在lycotoxin-1基因上产生一整套突变。改进的真空过滤系统可实现PCR产物的自动纯化。带有PCR插入片段的含有细菌的细菌的恢复和生长方法可在深孔板中的新型固体培养基上形成单个菌落。将插入片段克隆到细菌载体中以验证表达。这些协议构成了全自动分子生物学平台的核心,可以减少执行所有操作所需的成本和时间。

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