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超越极限:增加全球翻译活动可提高毕赤酵母中重组分泌蛋白的生产力。

Going beyond the limit: Increasing global translation activity leads to increased productivity of recombinant secreted proteins in Pichia pastoris.

机构信息

Christian Doppler Laboratory for Growth-decoupled Protein Production in Yeast, Vienna, Austria; Department of Biotechnology, Institute of Microbiology and Microbial Biotechnology (IMMB), University of Natural Resources and Life Sciences (BOKU), Vienna, Austria.

Department of Biotechnology, Institute of Microbiology and Microbial Biotechnology (IMMB), University of Natural Resources and Life Sciences (BOKU), Vienna, Austria.

出版信息

Metab Eng. 2022 Mar;70:181-195. doi: 10.1016/j.ymben.2022.01.010. Epub 2022 Jan 25.

Abstract

Yeasts are widely used cell factories for commercial heterologous protein production, however, specific productivities are usually tightly coupled to biomass formation. This greatly impacts production processes, which are commonly not run at the maximum growth rate, thereby resulting in suboptimal productivities. To tackle this issue, we evaluated transcriptomics datasets of the yeast Pichia pastoris (syn. Komagataella phaffii), which is known for its high secretory efficiency and biomass yield. These showed a clear downregulation of genes related to protein translation with decreasing growth rates, thus revealing the yeast translation machinery as cellular engineering target. By overexpressing selected differentially expressed translation factors, translation initiation was identified to be the main rate-limiting step. Specifically, overexpression of factors associated with the closed-loop conformation, a structure that increases stability and rates of translation initiation before start codon scanning is initiated, showed the strongest effects. Overexpression of closed-loop factors alone or in combination increased titers of different heterologous proteins by up to 3-fold in fed-batch processes. Furthermore, translation activity, correlating to the obtained secreted recombinant protein yields, selected transcript levels and total protein content were higher in the engineered cells. Hence, translation factor overexpression, globally affects the cell. Together with the observed impact on the transcriptome and total protein content, our results indicate that the capacity of P. pastoris for protein production is not at its limit yet.

摘要

酵母是广泛用于商业异源蛋白生产的细胞工厂,但特定的生产力通常与生物量形成紧密相关。这极大地影响了生产过程,通常不会以最大生长速率运行,从而导致生产力不理想。为了解决这个问题,我们评估了酵母毕赤酵母(同义词:Komagataella phaffii)的转录组数据集,该酵母以其高分泌效率和生物量产率而闻名。这些数据显示,随着生长速率的降低,与蛋白质翻译相关的基因明显下调,从而揭示了酵母翻译机制是细胞工程的目标。通过过表达选定的差异表达翻译因子,鉴定出翻译起始是主要的限速步骤。具体来说,与闭环构象相关的因子的过表达,在起始密码子扫描开始之前增加了翻译起始的稳定性和速率,显示出最强的效果。单独或组合过表达闭环因子可使不同异源蛋白的滴度在分批补料过程中提高多达 3 倍。此外,翻译活性与获得的分泌重组蛋白产量相关,工程细胞中的选定转录水平和总蛋白含量更高。因此,翻译因子的过表达会全局影响细胞。结合对转录组和总蛋白含量的观察影响,我们的结果表明,毕赤酵母的蛋白生产能力尚未达到极限。

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