Univ Strasbourg, INRA, Inst Natl Recherche Agron, Métab Second Vigne, Unit Mixte Recherche Santé Vigne & Qual Vins, 28 rue de Herrlisheim, F-68021Colmar, France.
Biotechnol Bioeng. 2011 Aug;108(8):1883-92. doi: 10.1002/bit.23129. Epub 2011 Mar 21.
Terpenoids are one of the largest and most diverse families of natural compounds. They are heavily used in industry, and the trend is toward engineering modified microorganisms that produce high levels of specific terpenoids. Most studies have focused on creating specific heterologous pathways for sesquiterpenes in Escherichia coli or yeast. We subjected the Saccharomyces cerevisiae ERG20 gene (encoding farnesyl diphosphate synthase) to a set of amino acid mutations in the catalytic site at position K197. Mutated strains have been shown to exhibit various growth rate, sterol amount, and monoterpenol-producing capacities. These results are discussed in the context of the potential use of these mutated strains for heterologous expression of monoterpenoid synthases, which was investigated using Ocimum basilicum geraniol synthase. The results obtained with up to 5 mg/L geraniol suggest a major improvement compared with previous available expression systems like Escherichia coli or yeast strains with an unmodified ERG20 gene that respectively delivered amounts in the 10 and 500 µg/L range or even a previously characterized K197E mutation that delivered amounts in the 1 mg/L range.
萜类化合物是最大和最多样化的天然化合物家族之一。它们在工业中被广泛使用,趋势是工程改造能够产生高浓度特定萜类化合物的微生物。大多数研究都集中在在大肠杆菌或酵母中构建特定的倍半萜异源途径。我们对酿酒酵母 ERG20 基因(编码法呢基二磷酸合酶)的催化位点 K197 位置的一组氨基酸进行了突变。已证明突变株表现出不同的生长速率、固醇量和单萜醇产生能力。这些结果在讨论潜在使用这些突变株进行单萜合酶的异源表达时进行了讨论,使用罗勒香叶醇合酶进行了研究。与以前的大肠杆菌或酿酒酵母菌株等可用表达系统相比,获得的高达 5 mg/L 香叶醇的结果表明有了重大改进,而 ERG20 基因未修饰的这些菌株的表达量分别在 10 和 500 µg/L 范围内,甚至以前表征的 K197E 突变的表达量也在 1 mg/L 范围内。