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Use of a YAP1 overexpression cassette conferring specific resistance to cerulenin and cycloheximide as an efficient selectable marker in the yeast Saccharomyces cerevisiae

机译:YAP1过量表达盒在啤酒酵母中作为一种有效的选择标记,可赋予特定的抗天蓝素和环己酰亚胺抗性

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Drug-resistance markers for yeast transformation are useful because they can be applied to strains without auxotrophic mutations. However, they are susceptible to technical difficulties, namely lower transformation efficiency and the appearance of drug-resistant mutants without the marker. To avoid these problems, we have constructed a phosphoglycerate kinase (PGK) promoter-driven YAP1 expression cassette, called PGKp-YAP1. Yeast cells containing PGKp-YAP1 were resistant to cycloheximide, a protein synthesis inhibitor, and also to cerulenin, a fatty acid synthesis inhibitor, but not to other drugs tested. The transformation efficiency of PGKp-YAP1 using cerulenin selection was comparable to that using a URA3 auxotrophic marker when low concentrations of cerulenin were used. Non-transformed drug-resistant colonies did appear on the low-concentration cerulenin plates. However, these non-transformed colonies could easily be identified, based on their cycloheximide sensitivity and/or their resistance to aureobasidin A to which the transformants were sensitive. Therefore, the dual drug resistance of PGKp-YAP1 could be used as an effective selection for PGKp-YAP1 recipient cells. The PGKp-YAP1 marker was used to disrupt the LYS2 gene and to transform an industrial yeast strain, indicating that this marker can be used for efficient and reliable gene manipulations in any Saccharomyces cerevisiae strain.
机译:用于酵母转化的抗药性标记很有用,因为它们可以应用于无营养缺陷型突变的菌株。然而,它们易受技术困难的影响,即较低的转化效率和无标记的耐药突变体的出现。为避免这些问题,我们构建了磷酸甘油酸激酶(PGK)启动子驱动的YAP1表达盒,称为PGKp-YAP1。含有PGKp-YAP1的酵母细胞对蛋白质合成抑制剂环己酰亚胺和脂肪酸合成抑制剂天青素具有抗性,但对其他测试药物没有抗性。当使用低浓度的铜蓝蛋白时,使用铜绿蛋白选择的PGKp-YAP1的转化效率与使用URA3营养缺陷型标记的转化效率相当。未转化的耐药菌落确实出现在低浓度的铜蓝蛋白板上。然而,基于它们的环己酰亚胺敏感性和/或它们对转化子敏感的对金黄色葡萄球菌素A的抗性,可以容易地鉴定出这些未转化的菌落。因此,PGKp-YAP1的双重耐药性可以用作PGKp-YAP1受体细胞的有效选择。 PGKp-YAP1标记用于破坏LYS2基因并转化工业酵母菌株,表明该标记可用于任何酿酒酵母菌株的高效可靠的基因操作。

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