Department of Biotechnology, Institute of Microbiology and Microbial Biotechnology, University of Natural Resources and Life Sciences Vienna (BOKU), Muthgasse 18, 1190 Vienna, Austria.
Austrian Centre of Industrial Biotechnology (ACIB), Muthgasse 11, 1190 Vienna, Austria.
FEMS Yeast Res. 2021 Dec 24;21(8). doi: 10.1093/femsyr/foab059.
The important industrial protein production host Komagataella phaffii (syn Pichia pastoris) is classified as a non-conventional yeast. But what exactly makes K. phaffii non-conventional? In this review, we set out to address the main differences to the 'conventional' yeast Saccharomyces cerevisiae, but also pinpoint differences to other non-conventional yeasts used in biotechnology. Apart from its methylotrophic lifestyle, K. phaffii is a Crabtree-negative yeast species. But even within the methylotrophs, K. phaffii possesses distinct regulatory features such as glycerol-repression of the methanol-utilization pathway or the lack of nitrate assimilation. Rewiring of the transcriptional networks regulating carbon (and nitrogen) source utilization clearly contributes to our understanding of genetic events occurring during evolution of yeast species. The mechanisms of mating-type switching and the triggers of morphogenic phenotypes represent further examples for how K. phaffii is distinguished from the model yeast S. cerevisiae. With respect to heterologous protein production, K. phaffii features high secretory capacity but secretes only low amounts of endogenous proteins. Different to S. cerevisiae, the Golgi apparatus of K. phaffii is stacked like in mammals. While it is tempting to speculate that Golgi architecture is correlated to the high secretion levels or the different N-glycan structures observed in K. phaffii, there is recent evidence against this. We conclude that K. phaffii is a yeast with unique features that has a lot of potential to explore both fundamental research questions and industrial applications.
重要的工业蛋白生产宿主 Komagataella phaffii(又名 Pichia pastoris)被归类为非常规酵母。但是,究竟是什么使 K. phaffii 成为非常规酵母呢?在这篇综述中,我们旨在阐明其与“常规”酵母酿酒酵母的主要区别,但也指出了其与其他用于生物技术的非常规酵母的区别。除了甲醇营养型生活方式外,K. phaffii 还是一种 Crabtree 阴性酵母物种。但即使在甲醇营养型酵母中,K. phaffii 也具有独特的调控特征,例如甘油对甲醇利用途径的抑制或缺乏硝酸盐同化。调节碳(和氮)源利用的转录网络的重排显然有助于我们理解酵母物种进化过程中发生的遗传事件。交配型转换的机制和形态发生表型的触发是 K. phaffii 与模式酵母酿酒酵母区分开来的进一步例子。就异源蛋白生产而言,K. phaffii 具有高分泌能力,但仅分泌少量内源性蛋白。与酿酒酵母不同,K. phaffii 的高尔基体像哺乳动物一样堆叠。虽然人们倾向于推测高尔基体结构与 K. phaffii 中观察到的高分泌水平或不同的 N-糖链结构相关,但最近的证据却对此提出了质疑。我们的结论是,K. phaffii 是一种具有独特特征的酵母,具有很大的潜力来探索基础研究问题和工业应用。