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High-Throughput Construction and Screening of Protein Libraries by Cell-Free Systems

机译:无细胞系统高通量构建和筛选蛋白文库

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摘要

A novel, biological-cloning-independent strategy for construction of protein libraries has been developed and demonstrated experimentally. A pool of genes is extensively diluted to give one molecule of DNA per well. Instead of transformation of living cells, each individual molecule is amplified separately by polymerase chain reaction (single-molecule PCR) yielding a DNA library named 'PCR library'. Subsequently, the PCR library is directly transformed into a protein library by means of in vitro coupled transcription/translation. Amounts of DNA produced by the single-molecule PCR were equal and uniformity of amounts of successively in vitro synthesized proteins, which are critical for quantitative comparison among clones in protein library, were better than those of the classical in vivo expression system. Libraries of single-chain Fv, and bacterial lipase, the green florescent protein of Aequorea victoria have been constructed by the system to demonstrate its applicability. Application of the strategy described for high-throughput, generation and screening of protein libraries will be discussed.
机译:开发了一种新颖的,不依赖生物克隆的蛋白质文库构建策略,并通过实验进行了证明。基因库被大量稀释,每孔产生一个DNA分子。代替转化活细胞,每个单个分子通过聚合酶链反应(单分子PCR)分别扩增,产生一个名为“ PCR库”的DNA库。随后,通过体外偶联的转录/翻译将PCR文库直接转化为蛋白质文库。单分子PCR产生的DNA量相等,并且连续体外合成的蛋白质量的均匀性比经典的体内表达系统要好,这对于蛋白质库中各个克隆之间的定量比较至关重要。该系统已构建了单链Fv文库和细菌脂肪酶,维多利亚水母的绿色荧光蛋白,以证明其适用性。将讨论所描述的用于高通量,生成和筛选蛋白质文库的策略。

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