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Improvement of a Candida antarctica lipase B-displaying yeast whole-cell biocatalyst and its application to the polyester synthesis reaction

机译:展示南极假丝酵母脂肪酶B的酵母全细胞生物催化剂的改进及其在聚酯合成反应中的应用

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A Candida antarctica lipase B (CALB)-displaying yeast whole-cell biocatalyst was constructed with the integration of the CALB cell-surface display expression cassette in the yeast genome and cell fusion by mating. Lipase hydrolytic activity of the yeast whole-cell biocatalyst subsequently increased, in both a- and alpha-type yeast cells, with the number of copies of the CALB cell-surface display expression cassette introduced, and reached 43.6 and 32.2 U/g-dry cell at 168 h cultivation, respectively. The lipase hydrolytic activity of whole cells in diploid yeast cells containing eight copies of the CALB cell-surface expression cassette reached 117 U/g-dry cell, and this value is approximately ninefold higher than that of the previously reported haploid CALB cell-surface displaying yeast using a multi-copy plasmid (Tanino et al. Appl. Microbial Biotechnol 75:1319-1325, 2007). This improved novel CALB-displaying yeast whole-cell biocatalyst could repeatedly catalyze the polyester, polybutylene adipate, synthesis reaction, using adipic acid and 1, 4-butandiol as the monomer molecules, four times in succession. This is the first report of the polymer synthesis using enzyme displaying yeast as the catalyst. The ratios of cyclic compounds in the polybutylene adipates synthesized with the CALB-displaying yeast whole-cells were lower than that in the polybutylene adipate synthesized with conventional metal catalysis. From these results, it appears that the use of CALB-displaying yeast cells could be useful for the polyester synthesis reaction, with reduced by-product production.
机译:通过将CALB细胞表面展示表达盒整合到酵母基因组中,并通过交配进行细胞融合,构建了展示南极假丝酵母脂肪酶B(CALB)的酵母全细胞生物催化剂。随后,在α型和α型酵母细胞中,酵母全细胞生物催化剂的脂肪酶水解活性增加,同时引入了CALB细胞表面展示表达盒的拷贝数,达到了43.6和32.2 U / g-干细胞分别在168 h培养。包含8个拷贝的CALB细胞表面表达盒的二倍体酵母细胞中全细胞的脂肪酶水解活性达到117 U / g-干细胞,该值比以前报道的单倍体CALB细胞表面展示高约9倍。酵母使用多拷贝质粒(Tanino et al.Appl.Microbial Biotechnol 75:1319-1325,2007)。该改进的新型展示CALB的酵母全细胞生物催化剂可以连续四次以己二酸和1,4-丁二醇为单体,反复催化聚酯,聚己二酸丁二酯的合成反应。这是使用展示酵母的酶作为催化剂的聚合物合成的首次报道。用展示CALB的酵母全细胞合成的聚己二酸丁二酯中的环状化合物的比率低于用常规金属催化合成的聚己二酸丁二酯中的环状化合物的比率。从这些结果可以看出,使用展示CALB的酵母细胞可用于聚酯合成反应,同时减少副产物的产生。

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