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首页> 外文期刊>Applied biochemistry and biotechnology, Part A. enzyme engineering and biotechnology >A Novel Potential Signal Peptide Sequence and Overexpression of ER-Resident Chaperones Enhance Heterologous Protein Secretion in Thermotolerant Methylotrophic Yeast Ogataea thermomethanolica
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A Novel Potential Signal Peptide Sequence and Overexpression of ER-Resident Chaperones Enhance Heterologous Protein Secretion in Thermotolerant Methylotrophic Yeast Ogataea thermomethanolica

机译:新型的潜在信号肽序列和内质网居民伴侣的过表达增强了耐高温甲基营养酵母Ogataea hotmethanolica的异源蛋白质分泌。

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The thermotolerant methylotrophic yeast Ogataea thermomethanolica is a host for heterologous protein expression via secretion to the culture medium. Efficient secretion is a major bottleneck for heterologous protein production in this strain. To improve protein secretion, we explored whether the use of a native signal peptide sequence for directing heterologous protein secretion and overexpression of native ER-resident chaperone genes could improve heterologous protein secretion in O. thermomethanolica. We cloned and characterized genes encoding alpha-mating factor (Ot alpha-MF) and ER-resident chaperones OtBiP, OtCNE1, and OtPDI. The pre and pre-pro sequences of Ot alpha-MF were shown to promote higher secretion of heterologous endoxylanase comparing with the classical pre-pro sequence of Saccharomyces cerevisiae. However, in the case of heterologous glycosylated phytase, only the Ot alpha-MF pre-pro sequence significantly enhanced protein secretion. The effect of chaperone overexpression on heterologous protein secretion was tested in cotransformant cells of O. thermomethanolica. Overexpression of ER-resident chaperones improved protein secretion depending on heterologous protein. Overexpression of OtBiP, OtCNE1, and OtPDI significantly increased unglycosylated endoxylanase secretion at both 30 and 37 A degrees C while only OtBiP overexpression enhanced glycosylated phytase secretion at 30 A degrees C. These observations suggested the possibility to improve heterologous protein secretion in O. thermomethanolica.
机译:耐高温甲基营养酵母Ogataea thermomethanolica是通过分泌到培养基来表达异源蛋白质的宿主。有效分泌是该菌株中异源蛋白质生产的主要瓶颈。为了改善蛋白质分泌,我们探索了使用天然信号肽序列指导异源蛋白质分泌和天然表达ER内在伴侣分子基因的过表达是否可以改善热甲醇乙醇中的异源蛋白质分泌。我们克隆并表征了编码α-交配因子(Ot alpha-MF)和ER驻留分子伴侣OtBiP,OtCNE1和OtPDI的基因。与酿酒酵母的经典前原序列相比,Ot alpha-MF的前原序列和前原序列显示出可促进异源内切木聚糖酶的更高分泌。然而,在异源糖基化植酸酶的情况下,仅Ot alpha-MF pre-pro序列显着增强了蛋白质分泌。在热甲醇曲霉的共转化细胞中测试了伴侣蛋白过表达对异源蛋白分泌的影响。 ER驻留伴侣蛋白的过表达改善了蛋白质分泌,这取决于异源蛋白质。 OtBiP,OtCNE1和OtPDI的过表达显着增加了30和37 A时的未糖基化内切木聚糖酶分泌,而只有OtBiP的过表达增强了30 A时的糖基化植酸酶分泌。

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