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Generation of diploid Pichia pastoris strains by mating and their application for recombinant protein production

机译:通过交配产生二倍体毕赤酵母菌株及其在重组蛋白生产中的应用

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Background Yeast mating provides an efficient means for strain and library construction. However, biotechnological applications of mating in the methylotrophic yeast Pichia pastoris have been hampered because of concerns about strain stability of P. pastoris diploids. The aim of the study reported here is to investigate heterologous protein expression in diploid P. pastoris strains and to evaluate diploid strain stability using high cell density fermentation processes. Results By using a monoclonal antibody as a target protein, we demonstrate that recombinant protein production in both wild-type and glycoengineered P. pastoris diploids is stable and efficient during a nutrient rich shake flask cultivation. When diploid strains were cultivated under bioreactor conditions, sporulation was observed. Nevertheless, both wild-type and glycoengineered P. pastoris diploids showed robust productivity and secreted recombinant antibody of high quality. Specifically, the yeast culture maintained a diploid state for 240?h post-induction phase while protein titer and N-linked glycosylation profiles were comparable to that of a haploid strain expressing the same antibody. As an application of mating, we also constructed an antibody display library and used mating to generate novel full-length antibody sequences. Conclusions To the best of our knowledge, this study reports for the first time a comprehensive characterization of recombinant protein expression and fermentation using diploid P. pastoris strains. Data presented here support the use of mating for various applications including strain consolidation, variable-region glycosylation antibody display library, and process optimization.
机译:背景酵母的交配为菌株和文库的构建提供了一种有效的手段。然而,由于担心巴斯德毕赤酵母二倍体的菌株稳定性,在甲基营养酵母毕赤酵母中交配的生物技术应用受到阻碍。本文报道的研究目的是研究二倍体巴斯德毕赤酵母菌株中的异源蛋白表达,并使用高细胞密度发酵工艺评估二倍体菌株的稳定性。结果通过使用单克隆抗体作为靶蛋白,我们证明了在富营养的摇瓶培养过程中,野生型和糖工程化巴斯德毕赤酵母二倍体中的重组蛋白生产都是稳定且有效的。当在生物反应器条件下培养二倍体菌株时,观察到孢子形成。然而,野生型和糖工程化的巴斯德毕赤酵母二倍体均显示出强大的生产力并分泌了高质量的重组抗体。具体而言,酵母培养物在诱导后的240µh内保持二倍体状态,而蛋白滴度和N-连接的糖基化谱与表达相同抗体的单倍体株相当。作为交配的应用,我们还构建了抗体展示文库,并用于进行交配以生成新的全长抗体序列。结论据我们所知,本研究首次报道了使用二倍体巴斯德毕赤酵母菌株重组蛋白表达和发酵的全面表征。本文提供的数据支持将交配用于各种应用,包括菌株整合,可变区糖基化抗体展示库和工艺优化。

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