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首页> 外文期刊>Nucleic acids research >The RNA polymerase factory: a robotic in vitro assembly platform for high-throughput production of recombinant protein complexes
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The RNA polymerase factory: a robotic in vitro assembly platform for high-throughput production of recombinant protein complexes

机译:RNA聚合酶工厂:用于高通量生产重组蛋白复合物的机器人体外组装平台

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The in-depth structure/function analysis of large protein complexes, such as RNA polymerases (RNAPs), requires an experimental platform capable of assembling variants of such enzymes in large numbers in a reproducible manner under defined in vitro conditions. Here we describe a streamlined and integrated protocol for assembling recombinant archaeal RNAPs in a high-throughput 96-well format. All aspects of the procedure including construction of redesigned expression plasmids, development of automated protein extraction/in vitro assembly methods and activity assays were specifically adapted for implementation on robotic platforms. The optimized strategy allows the parallel assembly and activity assay of 96 recombinant RNAPs (including wild-type and mutant variants) with little or no human intervention within 24 h. We demonstrate the high-throughput potential of this system by evaluating the side-chain requirements of a single amino acid position of the RNAP Bridge Helix using saturation mutagenesis.
机译:大型蛋白质复合物(例如RNA聚合酶(RNAP))的深入结构/功能分析需要一个实验平台,该平台能够在规定的体外条件下以可重现的方式大量组装此类酶的变体。在这里,我们描述了以高通量96孔格式组装重组古细菌RNAP的简化和集成协议。该程序的所有方面,包括重新设计的表达质粒的构建,自动化蛋白质提取/体外组装方法的开发和活性测定,都特别适合在机器人平台上实施。优化的策略允许在24小时内几乎没有人为干预的情况下,对96个重组RNAP(包括野生型和突变型变体)进行平行组装和活性测定。我们通过使用饱和诱变评估RNAP桥螺旋的单个氨基酸位置的侧链要求,证明了该系统的高通量潜力。

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