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Quantifying and resolving multiple vector transformants in S. cerevisiae plasmid libraries

机译:定量和解析啤酒酵母质粒文库中的多个载体转化子

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摘要

BackgroundIn addition to providing the molecular machinery for transcription and translation, recombinant microbial expression hosts maintain the critical genotype-phenotype link that is essential for high throughput screening and recovery of proteins encoded by plasmid libraries. It is known that Escherichia coli cells can be simultaneously transformed with multiple unique plasmids and thusly complicate recombinant library screening experiments. As a result of their potential to yield misleading results, bacterial multiple vector transformants have been thoroughly characterized in previous model studies. In contrast to bacterial systems, there is little quantitative information available regarding multiple vector transformants in yeast. Saccharomyces cerevisiae is the most widely used eukaryotic platform for cell surface display, combinatorial protein engineering, and other recombinant library screens. In order to characterize the extent and nature of multiple vector transformants in this important host, plasmid-born gene libraries constructed by yeast homologous recombination were analyzed by DNA sequencing.
机译:背景技术除了提供转录和翻译的分子机制外,重组微生物表达宿主还维持关键的基因型-表型链接,这对于高通量筛选和回收质粒文库编码的蛋白质至关重要。已知可以用多个独特质粒同时转化大肠杆菌细胞,从而使重组文库筛选实验复杂化。由于它们可能产生误导性结果,因此在先前的模型研究中已对细菌多种载体转化子进行了全面表征。与细菌系统相反,关于酵母中多种载体转化体的定量信息很少。酿酒酵母是用于细胞表面展示,组合蛋白工程和其他重组文库筛选的最广泛使用的真核平台。为了表征在该重要宿主中多个载体转化体的程度和性质,通过DNA测序分析了通过酵母同源重组构建的质粒出生的基因文库。

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