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Efficient Library Construction by In Vivo Recombination with a Telomere-Originated Autonomously Replicating Sequence of Hansenula polymorpha

机译:通过端粒起源的多形汉逊酵母自主复制序列体内重组的高效文库建设。

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摘要

A high frequency of transformation and an equal gene dosage between transformants are generally required for activity-based selection of mutants from a library obtained by directed evolution. An efficient library construction method was developed by using in vivo recombination in Hansenula polymorpha. Various linear sets of vectors and insert fragments were transformed and analyzed to optimize the in vivo recombination system. A telomere-originated autonomously replicating sequence (ARS) of H. polymorpha, reported as a recombination hot spot, facilitates in vivo recombination between the linear transforming DNA and chromosomes. In vivo recombination of two linear DNA fragments containing the telomeric ARS drastically increases the transforming frequency, up to 10-fold, compared to the frequency of circular plasmids. Direct integration of the one-end-recombined linear fragment into chromosomes produced transformants with single-copy gene integration, resulting in the same expression level for the reporter protein between transformants. This newly developed in vivo recombination system of H. polymorpha provides a suitable library for activity-based selection of mutants after directed evolution.
机译:从通过定向进化获得的文库中基于活性的突变体选择,通常需要高频率的转化和转化子之间相等的基因剂量。通过在多形汉逊酵母中体内重组开发了一种有效的文库构建方法。各种线性组的载体和插入片段被转化和分析以优化体内重组系统。端粒起源的多形汉逊酵母的自主复制序列(ARS),据报道是重组热点,促进了线性转化DNA和染色体之间的体内重组。与环状质粒的频率相比,含有端粒ARS的两个线性DNA片段的体内重组显着提高了转化频率,最高可达10倍。将一端重组的线性片段直接整合到染色体中可产生具有单拷贝基因整合的转化子,从而使转化子之间的报道蛋白表达水平相同。这种新开发的多形汉逊酵母体内重组系统为定向进化后的突变体基于活性的选择提供了合适的文库。

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