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在巴斯德毕赤酵母中组成型高水平表达来自嗜热古菌海栖热袍菌的密码子优化 β-果聚糖酶基因。

Constitutive high-level expression of a codon-optimized β-fructosidase gene from the hyperthermophile Thermotoga maritima in Pichia pastoris.

机构信息

Plant-Microbe Interactions Laboratory, Center for Genetic Engineering and Biotechnology (CIGB), Ave 31 entre 158 y 190, Apartado Postal 6162, Havana, 10600, Cuba.

出版信息

Appl Microbiol Biotechnol. 2013 Feb;97(3):1201-12. doi: 10.1007/s00253-012-4270-2. Epub 2012 Jul 21.

Abstract

Enzymes for use in the sugar industry are preferred to be thermotolerant. In this study, a synthetic codon-optimized gene encoding a highly thermostable β-fructosidase (BfrA, EC 3.2.1.26) from the bacterium Thermotoga maritima was expressed in the yeast Pichia pastoris. The gradual increase of the transgene dosage from one to four copies under the control of the constitutive glyceraldehyde 3-phosphate dehydrogenase promoter had an additive effect on BfrA yield without causing cell toxicity. Maximal values of cell biomass (115 g/l, dry weight) and overall invertase activity (241 U/ml) were reached at 72 h in fed-batch fermentations using cane sugar as the main carbon source for growth. Secretion driven by the Saccharomyces cerevisiae α-factor signal peptide resulted in periplasmic retention (44 %) and extracellular release (56 %) of BfrA. The presence of N-linked oligosaccharides did not influence the optimal activity, thermal stability, kinetic properties, substrate specificity, and exo-type action mode of the yeast-secreted BfrA in comparison to the native unglycosylated enzyme. Complete inversion of cane sugar at initial concentration of 60 % (w/v) was achieved by periplasmic BfrA in undisrupted cells reacting at pH 5.5 and 70 °C, with average productivity of 4.4 g of substrate hydrolyzed per grams of biomass (wet weight) per hour. The high yield of fully active glycosylated BfrA here attained by recombinant P. pastoris in a low-cost fermentation process appears to be attractive for the large-scale production of this thermostable enzyme useful for the manufacture of inverted sugar syrup.

摘要

用于制糖工业的酶优选为耐热的。在这项研究中,来自嗜热栖热菌(Thermotoga maritima)的高度耐热β-呋喃果糖苷酶(BfrA,EC 3.2.1.26)的合成密码子优化基因在巴斯德毕赤酵母(Pichia pastoris)中表达。在组成型甘油醛-3-磷酸脱氢酶启动子的控制下,转基因剂量从一个逐渐增加到四个拷贝具有累加效应,不会引起细胞毒性。在以甘蔗作为主要碳源进行分批补料发酵时,72 小时达到细胞生物量(115 g/l,干重)和总转化酶活性(241 U/ml)的最大值。在蔗糖作为生长的主要碳源的分批补料发酵中,利用酿酒酵母α因子信号肽驱动的分泌导致 BfrA 保留在周质(44%)和释放到细胞外(56%)。与天然未糖基化酶相比,存在 N-连接寡糖并不影响酵母分泌的 BfrA 的最佳活性、热稳定性、动力学特性、底物特异性和外切酶作用模式。在 pH 值为 5.5 和 70°C 时,完整的蔗糖初始浓度为 60%(w/v)的未破碎细胞中的周质 BfrA 可实现完全转化,平均每克生物质(湿重)每小时可水解 4.4 克底物。重组毕赤酵母在低成本发酵过程中获得的完全活性糖基化 BfrA 的高产量似乎很有吸引力,可用于制造具有工业价值的耐热型转化酶糖浆。

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