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首页> 外文期刊>Journal of Biotechnology >Construction of cellobiose-growing and fermenting Saccharomyces cerevisiae strains
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Construction of cellobiose-growing and fermenting Saccharomyces cerevisiae strains

机译:纤维二糖发酵酿酒酵母菌株的构建

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Beta-glucosidase genes of fungal origins were isolated and heterologously expressed in Saccharomyces cerevisiae to enable growth on the disaccharide, cellobiose. To promote secretion of the beta-glucosidases, the genes were fused to the secretion signal of the Trichoderma reesei xyn2 gene and constitutively expressed from a multi-copy yeast expression vector under transcriptional control of the S. cerevisiae PGK1 promoter and terminator. The resulting recombinant enzymes were characterized with respect to pH and temperature optimum, as well as kinetic properties. The two most promising enzymes, BGL1 from Saccharomycopsis fibuligera and BglA from Aspergillus kawachii, were anchored to the yeast cell surface by fusing the mature proteins to the alpha-agglutinin (AGalpha1) or cell wall protein 2 (Cwp2) peptides. The maximum specific growth rates (mu(max)) of the recombinant S. cerevisiae strains were determined in batch cultivation. S. cerevisiae secreting the recombinant S. fibuligera BGL1 enzyme sustained growth aerobically and anaerobically, in minimal medium containing 5g L(-1) cellobiose at 0.23 h(-1) (compared to 0.29 h(-1) on glucose) and 0.18 h(-1) (compared to 0.25 h(-1) on glucose), respectively. Substrate consumption and product formation were determined to evaluate product yields in glucose and cellobiose.
机译:分离出真菌来源的β-葡萄糖苷酶基因,并在酿酒酵母中异源表达,以使其能够在二糖,纤维二糖上生长。为了促进β-葡糖苷酶的分泌,将这些基因与里氏木霉xyn2基因的分泌信号融合,并在啤酒酵母PGK1启动子和终止子的转录控制下从多拷贝酵母表达载体组成性表达。相对于最适pH和温度以及动力学性质表征了所得重组酶。通过将成熟蛋白融合到α-凝集素(AGalpha1)或细胞壁蛋白2(Cwp2)肽上,两种最有希望的酶,即来自腓肠酵母菌的BGL1和来自河曲霉的BglA被固定在酵母细胞表面。在分批培养中确定了重组酿酒酵母菌株的最大比生长速率(mu(max))。在含有5g L(-1)纤维二糖的基本培养基中,分泌重组S.fibuligera BGL1酶的酿酒酵母在2003 h(-1)(葡萄糖上为0.29 h(-1))和0.18 h的基本培养基中持续需氧和厌氧生长(-1)(相比于葡萄糖0.25 h(-1))。确定底物消耗和产物形成以评估葡萄糖和纤维二糖中的产物产率。

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