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首页> 外文期刊>Applied and Environmental Microbiology >Engineering of Polyploid Saccharomyces cerevisiae for Secretion of Large Amounts of Fungal Glucoamylase
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Engineering of Polyploid Saccharomyces cerevisiae for Secretion of Large Amounts of Fungal Glucoamylase

机译:多倍体酿酒酵母分泌大量真菌葡糖淀粉酶的工程

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We engineered Saccharomyces cerevisiae cells that produce large amounts of fungal glucoamylase (GAI) from Aspergillus awamori var. kawachi. To do this, we used the δ-sequence-mediated integration vector system and the heat-induced endomitotic diploidization method. δ-Sequence-mediated integration is known to occur mainly in a particular chromosome, and the copy number of the integration is variable. In order to construct transformants carrying the GAI gene on several chromosomes, haploid cells carrying the GAI gene on different chromosomes were crossed with each other. The cells were then allowed to form spores, which was followed by dissection. Haploid cells containing GAI genes on multiple chromosomes were obtained in this way. One such haploid cell contained the GAI gene on five chromosomes and exhibited the highest GAI activity (5.93 U/ml), which was about sixfold higher than the activity of a cell containing one gene on a single chromosome. Furthermore, we performed heat-induced endomitotic diploidization for haploid transformants to obtain polyploid mater cells carrying multiple GAI genes. The copy number of the GAI gene increased in proportion to the ploidy level, and larger amounts of GAI were secreted.
机译:我们工程改造了酿酒酵母细胞,它们从泡盛曲霉中产生大量真菌葡糖淀粉酶(GAI)。河内为此,我们使用了δ序列介导的整合载体系统和热诱导的内吞有丝分裂二倍体化方法。已知δ序列介导的整合主要发生在特定染色体上,整合的拷贝数是可变的。为了构建在几个染色体上携带GAI基因的转化体,在不同染色体上携带GAI基因的单倍体细胞相互杂交。然后使细胞形成孢子,然后进行解剖。以这种方式获得了在多个染色体上包含GAI基因的单倍体细胞。一个这样的单倍体细胞在五个染色体上包含GAI基因,并表现出最高的GAI活性(5.93 U / ml),比在单个染色体上包含一个基因的细胞的活性高约六倍。此外,我们对单倍体转化子进行了热诱导的内吞二倍体化,以获得携带多个GAI基因的多倍体母细胞。 GAI基因的拷贝数与倍性水平成正比,并且分泌了大量的GAI。

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