CRISPR-Mediated rDNA Integration and Fluorescence Screening for Pathway Optimization in Pichia pastoris

Xiaojing Jiang, Mengxin Li, Zhijiao Wang, Cuifang Ye, Jucan Gao, Xiaowei Ai, Jingfei Bao, Jintao Cheng and Jiazhang Lian*, 
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Abstract

Gene dosage amplification is an effective strategy to improve the performance of heterologous genes and pathways. Pichia pastoris is an excellent recombinant protein expression host with high efficiency in protein folding and glycosylation. However, the traditional iterative multicopy integration method typically faces challenges such as being time-consuming and having high cost and potential gene mutations. Accordingly, we established CRISPR-mediated rDNA integration and fluorescence screening for pathway optimization (CRISPO) for multicopy pathway integration in a single-step and antibiotic-free manner. With geraniol biosynthesis as a case study, we designed CRISPO based on the use of glycerol-induced and glucose-repressed promoters (CRISPOi) or strong constitutive promoters (CRISPOc) to drive the expression of the red fluorescent protein mCherry as the screening marker. We employed CRISPOi for stable strain construction by multicopy integration of the geraniol synthase encoding gene, achieving a 19.5-fold increase in geraniol production. We demonstrated CRISPOc for visualizing and determining the rate-limiting steps of the mevalonate pathway, with HMG1 and ERG12 identified as the major rate-limiting enzymes through two rounds of exploration. Ultimately, CRISPO enabled us to construct an engineered P. pastoris strain producing 1.66 g/L geraniol (with a total of 2.12 g/L monoterpenoids) and 6.27 g/L geraniol (with a total of 6.48 g/L monoterpenoids) in 24-well plates and 5 L fermenters, respectively, representing the highest titer and productivity of geraniol ever reported. CRISPO is an important addition to the synthetic biology toolbox for the construction and optimization of P. pastoris cell factories.

crispr介导的毕赤酵母rDNA整合及途径优化荧光筛选
基因剂量扩增是提高外源基因和途径性能的有效策略。毕赤酵母是一种高效的蛋白质折叠和糖基化重组蛋白表达宿主。然而,传统的迭代多拷贝集成方法存在耗时、成本高、基因突变等问题。因此,我们建立了crispr介导的rDNA整合和荧光筛选途径优化(CRISPO),以单步和无抗生素的方式进行多拷贝途径整合。以香叶醇生物合成为例,我们设计了基于使用甘油诱导和葡萄糖抑制启动子(CRISPOi)或强组成启动子(CRISPOc)驱动红色荧光蛋白mCherry的表达作为筛选标记的CRISPO。我们利用CRISPOi技术通过多拷贝整合香叶醇合成酶编码基因构建稳定菌株,实现了香叶醇产量19.5倍的提高。我们展示了CRISPOc用于可视化和确定甲羟戊酸途径的限速步骤,通过两轮探索,HMG1和ERG12被确定为主要的限速酶。最终,CRISPO使我们能够构建出一种工程pastoris菌株,在24孔板和5 L发酵罐中分别产生1.66 g/L香叶醇(总共2.12 g/L单萜类物质)和6.27 g/L香叶醇(总共6.48 g/L单萜类物质),这是迄今为止报道的最高的香叶醇滴度和产量。CRISPO是构建和优化帕斯德酵母细胞工厂的合成生物学工具箱的重要补充。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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