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Enhance production of diterpenoids in yeast by overexpression of the fused enzyme of ERG20 and its mutant mERG20

机译:通过ERG20的融合酶的过度表达增强酵母中的二萜类化合物的生产及其突变物体MERG20

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Yeast has been widely used for large-scale production of terpenoids. In yeast, modifications of terpenoid biosynthetic pathways have been intensively studied. tHMG1 (encoding the catalytic domain of 3-hydroxy-3-methylglutaryl coenzyme A reductase of yeast) and UPC2-1 (the G888D mutant of UPC2 encoding a transcription factor) were integrated into yeast chromosome, and ERG9 (the squalene synthase gene of yeast) was knocked down to yield the chassis strain DH02. A F96C mutation in ERG20 (farnesyl diphosphate synthase of yeast) was conducted to obtain mERG20 which can function as a geranylgeranyl diphosphate synthase (GGPS). Then, three fused genes, including BTS1 (the yeast innate GGPS)-ERG20, ERG20-mERG20 and mERG20-ERG20, were constructed, and expressed either by the pESC-based plasmids in DH02, or by being integrated into DH02 chromosome. The highest geranylgeraniol (GGOH) content was observed in the extracts of DH12 integrated with ERG20-mERG20, corresponding to 3.2 and 2.3 folds of those of the strains integrated with BTS1 and mERG20, respectively. Finally, three genes encoding nor-copalyl diphosphate synthase (nor-CPS), ent-CPS and syn-CPS were integrated into the chromosome of DH12, respectively, to construct yeasts for producing corresponding copalyl diphosphates (CPPs). Thus, a yeast-based platform was built for characterizing all types of diterpene synthases using GGPP or various CPPs as their substrates.
机译:酵母已广泛用于大型产量的萜类化合物。在酵母中,已经深入研究了萜类生物合成途径的修饰。 Thmg1(将3-羟基-3-甲基型辅酶的催化结构域的酵母还原酶A还原)和UPC2-1(编码转录因子的UPC2的G888D突变体)纳入酵母染色体和ERG9(酵母的Squalene Synthase基因)被撞击以产生底盘菌株DHO 2。进行ERG20(酵母)中的F96C突变,得到MERG20,其可以用作天竺葵二磷酸二磷酸二磷酸合酶(GGPS)。然后,构建了三种融合基因,包括BTS1(酵母先天GGPS)-erg20,ERG20-MERG20和MERG20-ERG20,并通过DHO 2中的PESC基质粒表达,或通过集成到DHO 2染色体中。在与ERG20-MERG20集成的DH12的提取物中观察到最高的甘油烷醇(GGOH)含量,对应于与BTS1和MERG20集成的菌株的3.2和2.3倍。最后,将三个基因编码在二磷酸二磷酸二磷酸合酶(NOR-CPS),ENT-CPS和SYN-CPS分别被整合到DH12的染色体中,以构建用于制备相应的甲烷基二磷酸(CPP)的酵母。因此,建立了基于酵母的平台,用于使用GGPP或各种CPP作为其基板来表征所有类型的二萜合成酶。

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