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N-hypermannose glycosylation disruption enhances recombinant protein production by regulating secretory pathway and cell wall integrity in Saccharomyces cerevisiae

机译:的N-糖基化hypermannose中断通过调节在酿酒酵母分泌途径和细胞壁完整性增强重组蛋白生产

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Saccharomyces cerevisiae is a robust host for heterologous protein expression. The efficient expression of cellulases in S. cerevisiae is important for the consolidated bioprocess that directly converts lignocellulose into valuable products. However, heterologous proteins are often N-hyperglycosylated in S. cerevisiae, which may affect protein activity. In this study, the expression of three heterologous proteins, β-glucosidase, endoglucanase and cellobiohydrolase, was found to be N-hyperglycosylated in S. cerevisiae. To block the formation of hypermannose glycan, these proteins were expressed in strains with deletions in key Golgi mannosyltransferases (Och1p, Mnn9p and Mnn1p), respectively. Their extracellular activities improved markedly in the OCH1 and MNN9 deletion strains. Interestingly, truncation of the N-hypermannose glycan did not increase the specific activity of these proteins, but improved the secretion yield. Further analysis showed OCH1 and MNN9 deletion up-regulated genes in the secretory pathway, such as protein folding and vesicular trafficking, but did not induce the unfolded protein response. The cell wall integrity was also affected by OCH1 and MNN9 deletion, which contributed to the release of secretory protein extracellularly. This study demonstrated that mannosyltransferases disruption improved protein secretion through up-regulating secretory pathway and affecting cell wall integrity and provided new insights into glycosylation engineering for protein secretion.
机译:酿酒酵母是异源蛋白表达的强大宿主。钙纤维素酶的有效表达对于直接将木质纤维素转化为有价值的产品的综合生物过程至关重要。然而,异源蛋白通常在酿酒酵母中通常是n高凝血酶化,这可能影响蛋白质活性。在该研究中,发现三种异源蛋白质,β-葡糖苷酶,内切葡聚糖酶和纤维素水解酶的表达是在酿酒酵母中的N高凝胶化。为了阻断Hypermannose Glycan的形成,这些蛋白质分别以菌株表达,分别在keyGolgi甘露糖基转移酶(OCH1P,MNN9P和MNN1P)中缺失。在OCH1和MNN9缺失菌株中,它们的细胞外活动显着改善。有趣的是,N-Hypermannose Glycan的截短并未增加这些蛋白质的特定活性,但改善了分泌产率。进一步的分析显示OCH1和MNN9在分泌途径中缺失上调基因,例如蛋白质折叠和浆果贩运,但没有诱导展开的蛋白质反应。细胞壁完整性也受OCH1和MNN9缺失的影响,这有助于释放分泌蛋白细胞外。本研究证明,甘露那糖基转移酶通过上调分泌途径和影响细胞壁完整性,并为蛋白质分泌的糖基化工程提供新的洞察力,改善蛋白质分泌。

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