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The Insertion Green Monster (iGM) Method for Expression of Multiple Exogenous Genes in Yeast

机译:酵母中表达多个外源基因的插入绿色怪兽(iGM)方法

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Being a simple eukaryotic organism, Saccharomyces cerevisiae provides numerous advantages for expression and functional characterization of proteins from higher eukaryotes, including humans. However, studies of complex exogenous pathways using yeast as a host have been hampered by the lack of tools to engineer strains expressing a large number of genetic components. In addition to inserting multiple genes, it is often desirable to knock out or replace multiple endogenous genes that might interfere with the processes studied. Here, we describe the “insertion Green Monster” (iGM) set of expression vectors that enable precise insertion of many heterologous genes into the yeast genome in a rapid and reproducible manner and permit simultaneous replacement of selected yeast genes. As a proof of principle, we have used the iGM method to replace components of the yeast pathway for methionine sulfoxide reduction with genes encoding the human selenoprotein biosynthesis machinery and generated a single yeast strain carrying 11 exogenous components of the selenoprotein biosynthetic pathway in precisely engineered loci.
机译:作为一种简单的真核生物,酿酒酵母为来自包括人类在内的高级真核生物的蛋白质的表达和功能表征提供了许多优势。然而,由于缺乏用于工程化表达大量遗传成分的菌株的工具,阻碍了使用酵母作为宿主的复杂外源途径的研究。除了插入多个基因外,通常还希望敲除或替换可能干扰所研究过程的多个内源基因。在这里,我们描述了“插入绿色怪兽”(iGM)表达载体集,该载体能够将许多异源基因以快速和可重复的方式精确插入酵母基因组中,并允许同时替换选定的酵母基因。作为原理上的证明,我们已使用iGM方法用编码人类硒蛋白生物合成机制的基因替换用于蛋氨酸亚砜还原的酵母途径的成分,并在精确设计的基因座中生成了一个携带11种硒蛋白生物合成途径外源成分的酵母菌株。

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