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首页> 外文期刊>Gene: An International Journal Focusing on Gene Cloning and Gene Structure and Function >Module-based systematic construction of plasmids for episomal gene expression in fission yeast
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Module-based systematic construction of plasmids for episomal gene expression in fission yeast

机译:基于模块的裂变酵母中的重组基因表达质粒的系统构建

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Abstract The fission yeast Schizosaccharomyces pombe is a powerful model organism for cell biology and molecular biology, as genetic manipulation is easily achieved. Introduction of exogenous genes cloned in episomal plasmids into yeast cells can be done through well-established transformation methods. For expression of genes in S. pombe cells, the multi-copy plasmid pREP1 and its derivatives, including pREP41 and pREP81, have been widely used as vectors. Although recent advancement of technology brought a number of useful genetic elements such as new promoters, selection marker genes and fluorescent protein tags, introduction of those elements into conventional pREP1 requires a large commitment of both time and effort because cloning procedures need to be repeated until the final products are constructed. Here, we introduce materials and methods to construct many pREP1-type plasmids easily and systematically using the Golden Gate shuffling method, which enables one-step ligation of many DNA fragments into a plasmid. These materials and methods support creation of expression plasmids employing a variety of novel genetic elements, which will further facilitate genetic studies using S. pombe . Highlights ? pREP-type expression vectors can be easily constructed using a new material ? The Golden Gate cloning method is applied for systematic plasmid construction ? The plasmid made by the method worked efficiently as the original pREP vector did
机译:摘要裂变酵母Schizosaccharomyces Pombe是一种强大的细胞生物学和分子生物体的模型生物,因为遗传操作很容易实现。通过良好的变化方法,可以通过良好的转化方法进行简称重组质粒克隆到酵母细胞中的外源基因。对于S.Pombe细胞中基因的表达,多拷贝质粒预设及其衍生物(包括Prep41和Prep81)已被广泛用作载体。尽管最近的技术进步带来了许多有用的遗传元件,如新的启动子,选择标记基因和荧光蛋白标签,但将这些元素引入传统的预备,需要大量承诺,因为需要重复克隆程序直到最终产品建设。在这里,我们使用金闸门洗片方法介绍材料和方法,可以轻松地和系统地轻松地和系统地构建许多预备质粒,这使得许多DNA片段能够进入质粒。这些材料和方法支持采用各种新型遗传元素的表达质粒的产生,这将进一步促进使用S.Pombe的遗传研究。强调 ?可以使用新材料容易地构建预备表达向量?金门克隆方法应用于系统性质粒结构?通过该方法制备的质粒有效地工作,因为原始的预备载体确实如此

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