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首页> 外文期刊>Biotechnology and Bioengineering >Enhanced Cell-Surface Display and Secretory Production of Cellulolytic Enzymes With Saccharomyces cerevisiae Sed1 Signal Peptide
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Enhanced Cell-Surface Display and Secretory Production of Cellulolytic Enzymes With Saccharomyces cerevisiae Sed1 Signal Peptide

机译:酿酒酵母Sed1信号肽增强的细胞表面显示和纤维素酶的分泌产生。

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Recombinant yeast strains displaying aheterologous cellulolytic enzymes on their cell surfaces using a glycosylphosphatidylinositol (GPI) anchoring system are a promising strategy for bioethanol production from lignocellulosic materials. A crucial step for cell wall localization of the enzymes is the intracellular transport of proteins in yeast cells. Therefore, the addition of a highly efficient secretion signal sequence is important to increase the amount of the enzymes on the yeast cell surface. In this study, we demonstrated the effectiveness of a novel signal peptide (SP) sequence derived from the Saccharomyces cerevisiae SED1 gene for cell-surface display and secretory production of cellulolytic enzymes. Gene cassettes with SP sequences derived fromS. cerevisiae SED1 (SED1SP), Rhizopus oryzae glucoamylase (GLUASP), and S. cerevisiae alpha-mating pheromone (MF alpha 1SP) were constructed for cell-surface display of Aspergillus aculeatus beta-glucosidase (BGL1) and Trichoderma reesei endoglucanase II (EGII). These gene cassettes were integrated into the S. cerevisiae genome. The recombinant strains with the SED1SP showed higher cell-surface BGL and EG activities than those with the conventional SP sequences (GLUASP and MF alpha 1SP). The novel SP sequence also improved the secretory production of BGL and EG in S. cerevisiae. The extracellular BGL activity of the recombinant strains with the SED1SP was 1.3- and 1.9-fold higher than the GLUASP and MF alpha 1SP strains, respectively. Moreover, the utilization of SED1SP successfully enhanced the secretory production of BGL in Pichia pastoris. The utilization of the novel SP sequence is a promising option for highly efficient cell-surface display and secretory production of heterologous proteins in various yeast species. (C) 2016 Wiley Periodicals, Inc.
机译:使用糖基磷脂酰肌醇(GPI)锚定系统在其细胞表面显示异源纤维素分解酶的重组酵母菌株是从木质纤维素材料生产生物乙醇的有前途的策略。酶的细胞壁定位的关键步骤是酵母细胞中蛋白质的细胞内转运。因此,添加高效的分泌信号序列对于增加酵母细胞表面上酶的量很重要。在这项研究中,我们证明了源自酿酒酵母SED1基因的新型信号肽(SP)序列对于细胞表面展示和纤维素分解酶分泌产生的有效性。具有源自S的SP序列的基因盒。构建了酿酒酵母SED1(SED1SP),米根霉葡糖淀粉酶(GLUASP)和酿酒酵母α-交配信息素(MF alpha 1SP),用于在细胞表面展示刺孔曲霉β-葡萄糖苷酶(BGL1)和里氏木霉内切葡聚糖内切葡聚糖酶(II)。 。这些基因盒被整合到啤酒酵母基因组中。具有SED1SP的重组菌株比具有常规SP序列的重组菌株(GLUASP和MF alpha 1SP)表现出更高的细胞表面BGL和EG活性。新的SP序列还改善了酿酒酵母中BGL和EG的分泌产生。具有SED1SP的重组菌株的细胞外BGL活性分别比GLUASP和MF alpha 1SP菌株高1.3倍和1.9倍。而且,利用SED1SP成功地增强了毕赤酵母中BGL的分泌产生。利用新的SP序列是高效的细胞表面展示和各种酵母物种中异源蛋白分泌产生的有前途的选择。 (C)2016威利期刊公司

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