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Firm wheat-germ cell-free system with extended vector usage for high-throughput protein screening

机译:牢固的小麦胚无细胞系统,具有扩展的载体用途,可进行高通量蛋白质筛选

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摘要

The wheat germ cell-free system is composed out of five basic steps, growth of Escherichia coli harboring plasmid, first colony-PCR, second PCR, transcription, and translation. Improvements of culture medium, colony based PCR, and modifications within the split primer set of the second PCR amplify both DNA and RNA levels. This yields more than 5 times increase in protein amount for pEU-originated templates. Especially, for the low PCR-amplifiable vectors with pET-origin, it leads to 30 fold higher product amount in translation. This broadens the range of usable vectors, overcoming the existing cell-free system limitations for high-throughput protein screening. Noteworthily, the system successfully maintains translation by S-30 cell-free extract below 30 OD. In conclusion, this improved firm cell-free system reduces cost and enables robotic automation and high-throughput thermodynamic analysis, especially for proteins that are difficult to be expressed.
机译:小麦无生殖细胞系统由五个基本步骤组成:带有质粒的大肠杆菌生长,第一菌落PCR,第二个PCR,转录和翻译。培养基的改进,基于菌落的PCR以及第二个PCR的分裂引物组内的修饰均可扩增DNA和RNA水平。对于源自pEU的模板,这将使蛋白质量增加5倍以上。尤其是,对于具有pET来源的低PCR扩增载体,其翻译量提高了30倍。这拓宽了可用载体的范围,克服了现有的无细胞系统对高通量蛋白质筛选的限制。值得注意的是,该系统成功地通过30 OD以下的S-30无细胞提取物维持翻译。总之,这种改进的坚固的无细胞系统降低了成本,并实现了机器人自动化和高通量热力学分析,尤其是对于难以表达的蛋白质。

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