Pichia pastoris:用于重组蛋白质生成的酵母细胞

Neng Herawati, A. Kusumawati, A. Santoso
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摘要

毕赤酵母(Pichia pastoris)是一类甲基性酵母,被认为是表达和生产蛋白质的宿主,广泛用于生物制药基础药物的生产。这种酵母生长速度快,细胞密度高。其遗传稳定性、细胞密度高、抗逆性强,使得巴氏毕德酵母的培养过程和规模可以增加到20万升的培养规模。与在哺乳动物细胞中生产重组蛋白的昂贵和复杂的开发相比,在巴氏酵母中生产重组蛋白的开发相对简单和便宜。P. pastoris作为表达体系的优势在于它能够以甲醇为碳源,通过诱导乙醇氧化酶氧化酶(AOX)酶的表达。这种酶使用的启动子也被用作我们想要的蛋白质表达的强启动子。与细菌和哺乳动物系统不同,毕氏酵母细胞中的重组蛋白生产不受内毒素或病毒的污染,因此更安全,并简化了生物生产的下游过程。低上清中内源蛋白质的水平使毕赤酵母能够以高容量生产力进行培养,因此蛋白质生产过程变得非常经济。本文综述了利用巴斯德酵母作为表达系统必须考虑的几个问题,包括载体的选择、菌株、载体与基因组的整合机制、糖基化过程和工业应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Pichia pastoris: SEL RAGI UNTUK PRODUKSI PROTEIN REKOMBINAN
Pichia pastoris is a group of methylotropic yeast known as a host of expression and protein production which is widely used for biopharmaceutical-based drug production. This yeast can grow fast with a high cell density. Its genetic stability, high cell density, and stress resistance make the development process and scale-up of P. pastoris can increase to a scale of 200,000 liters of culture. In contrast to the expensive and complex development of recombinant protein production in mammalian cells, the development of production in P. pastoris is relatively simple and cheaper. The advantage of P. pastoris as an expression system is that it is able to use methanol as a carbon source by inducing the expression of alcohol oxidase oxidase (AOX) enzyme. Promoter used by this enzyme is also used as a strong promoter for the expression of proteins that we want. Unlike in bacterial and mammalian systems, recombinant protein production in Pichia cells is not contaminated with endotoxins or viruses so it is safer and simplifies the downstream processes in bioproduction. The level of endogenous protein in the low supernatant allows Pichia to cultivate with a high volumetric productivity, therefore the process of protein production becomes very economical. This review provides an overview of several things that must be considered in utilizing P. pastoris as an expression system including the selection of vectors, strains, vector integration mechanisms into the genome, glycosylation processes, and applications in industry.
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