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首页> 外文期刊>Applied Microbiology and Biotechnology >Single-step co-integration of multiple expressible heterologous genes into the ribosomal DNA of the methylotrophic yeast Hansenula polymorpha
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Single-step co-integration of multiple expressible heterologous genes into the ribosomal DNA of the methylotrophic yeast Hansenula polymorpha

机译:将多个可表达异源基因一步整合到甲基营养型酵母多形汉逊酵母的核糖体DNA中

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摘要

We have investigated the methylotrophic yeast Hansenula polymorpha as a host for the co-integration and expression of multiple heterologous genes using an rDNA integration approach. The ribosomal DNA (rDNA) of H. polymorpha was found to consist of a single rDNA cluster of about 50–60 repeats of an 8-kb unit located on chromosome II. A 2.4-kb segment of H. polymorpha rDNA encompassing parts of the 25S, the complete 5S and the non-transcribed spacer region between 25S and 18S rDNA was isolated and inserted into conventional integrative H. polymorpha plasmids harboring the Saccharomyces-cerevisiae-derived URA3 gene for selection. These rDNA plasmids integrated homologously into the rDNA repeats of a H. polymorpha (odc1) host as several independent clusters. Anticipating that this mode of multiple-cluster integration could be used for the simultaneous integration of several distinct rDNA plasmids, the host strain was co-transformed with a mixture of up to three different plasmids, all bearing the same URA3 selection marker. Transformations indeed resulted in mitotically stable strains harboring one, two, or all three plasmids integrated into the rDNA. The overall copy number of the plasmids integrated did not exceed the number of rDNA repeats present in the untransformed host strain, irrespective of the number of different plasmids involved. Strains harboring different plasmids co-expressed the introduced genes, resulting in functional proteins. Thus, this approach provides a new and attractive tool for the rapid generation of recombinant strains that simultaneously co-produce several proteins in desired stoichiometric ratios.
机译:我们已经研究了甲基营养酵母多形汉逊酵母作为宿主,使用rDNA整合方法共整合和表达多个异源基因。发现多形汉逊酵母的核糖体DNA(rDNA)由位于染色体II上的一个约8–kb单元的约50–60个重复的rDNA簇组成。分离出一个包含25S部分,完整5S以及25S和18S rDNA之间非转录间隔区的多形汉逊酵母DNA的2.4 kb片段,并将其插入包含酿酒酵母衍生的URA3的常规整合多形汉逊酵母质粒中选择基因。这些rDNA质粒作为几个独立的簇同源整合到多形汉逊酵母(odc1)宿主的rDNA重复序列中。预期该多簇整合模式可用于同时整合几个不同的rDNA质粒,因此将宿主菌株与多达三个不同质粒的混合物进行了共转化,所有质粒均带有相同的URA3选择标记。转化确实导致了带有一个,两个或所有三个整合到rDNA中的质粒的有丝分裂稳定菌株。整合的质粒的总拷贝数不超过未转化宿主菌株中存在的rDNA重复序列的数目,而与所涉及的不同质粒的数目无关。带有不同质粒的菌株共表达导入的基因,产生功能蛋白。因此,该方法为快速产生重组菌株提供了一种新颖且有吸引力的工具,该重组菌株同时以所需的化学计量比共同生产了几种蛋白质。

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  • 来源
    《Applied Microbiology and Biotechnology 》 |2002年第6期| 797-805| 共9页
  • 作者单位

    Institut für Mikrobiologie Heinrich-Heine-Universität Düsseldorf Universitätsstrasse 1 40225 Düsseldorf Germany;

    Institut für Mikrobiologie Heinrich-Heine-Universität Düsseldorf Universitätsstrasse 1 40225 Düsseldorf Germany;

    Institut für Mikrobiologie Heinrich-Heine-Universität Düsseldorf Universitätsstrasse 1 40225 Düsseldorf Germany;

    Rhein Biotech GmbH Eichsfelder Strasse 11 40595 Düsseldorf Germany;

    Institut für Mikrobiologie Heinrich-Heine-Universität Düsseldorf Universitätsstrasse 1 40225 Düsseldorf Germany;

    Rhein Biotech GmbH Eichsfelder Strasse 11 40595 Düsseldorf Germany;

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