CRISPR-Cas9-based one-step multiplexed genome editing through optimizing guide RNA processing strategies in Pichia pastoris

IF 4.4 2区 生物学 Q1 BIOTECHNOLOGY & APPLIED MICROBIOLOGY Synthetic and Systems Biotechnology Pub Date : 2025-06-01 Epub Date: 2025-01-23 DOI:10.1016/j.synbio.2025.01.005
Kaidi Chen , Gulikezi Maimaitirexiati , Qiannan Zhang , Yi Li , Xiangjian Liu , Hongting Tang , Xiang Gao , Bo Wang , Tao Yu , Shuyuan Guo
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Abstract

The important methylotrophic yeast Pichia pastoris has been utilized for the production of a variety of heterologous recombinant proteins and has great potential for use in the production of value-added compounds using methanol as a substrate. However, the lack of convenient and efficient genome engineering tools has hindered further applications of P. pastoris, especially in complex and multistep metabolic engineering scenarios. Hence, we developed a rapid and convenient multi-gene editing system based on CRISPR/Cas9 by optimizing the guide RNA processing strategy, which can achieve dual-gene knockout or multi-gene integration in single step. Firstly, we found that the HgH (HH-sgRNA-HDV) structure achieved the highest single-gene knockout efficiency (95.8 %) among the three sgRNA processing cassettes, including a tRNA-sgRNA-tRNA (tgt) array, HgH structure and tRNA-sgRNA-HDV (tgH) structure. Furthermore, the dHgH structure (double HgH) enabled one-step dual-gene disruption and multi-gene integration. The efficiency of dual-site knockout ranged from 60 % to 100 %, with functional genes knockout achieving approximately 60 % (Δaox1Δgut1), while dual neutral sites knockout reached 100 %. Finally, we applied the system for one-step production of fatty acids and 5-hydroxytryptophan. The yield of FFAs reached 23 mg/L/μg protein/OD, while the yield of 5-hydroxytryptophan was 13.3 mg/L. The system will contribute to the application of P. pastoris as an attractive cell factory for multiplexed compound biosynthesis and will serve as a valuable tool for enhancing one-carbon (C1) bio-utilization.
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基于crispr - cas9的一步多路基因组编辑——优化毕赤酵母向导RNA加工策略
重要的甲基营养酵母毕赤酵母已被用于生产多种异源重组蛋白,并且在以甲醇为底物生产增值化合物方面具有很大的潜力。然而,便捷高效的基因组工程工具的缺乏阻碍了巴斯德酵母的进一步应用,特别是在复杂和多步骤的代谢工程场景中。因此,我们通过优化引导RNA加工策略,开发了一种基于CRISPR/Cas9的快速便捷的多基因编辑系统,可一步实现双基因敲除或多基因整合。首先,我们发现在tRNA-sgRNA-tRNA (tgt)阵列、HgH结构和tRNA-sgRNA-HDV (tgH)结构三种sgRNA加工盒中,HgH (HH-sgRNA-HDV)结构的单基因敲除效率最高(95.8%)。此外,dHgH结构(双HgH)可以一步实现双基因破坏和多基因整合。双位点敲除的效率在60% - 100%之间,其中功能基因敲除达到约60% (Δaox1Δgut1),而双中性位点敲除达到100%。最后,我们将该系统应用于脂肪酸和5-羟色氨酸的一步法生产。游离脂肪酸的产率达到23 mg/L/μg蛋白/OD, 5-羟色氨酸的产率为13.3 mg/L。该系统将有助于pastoris作为多路化合物生物合成的有吸引力的细胞工厂的应用,并将作为提高一碳(C1)生物利用的有价值的工具。
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来源期刊
Synthetic and Systems Biotechnology
Synthetic and Systems Biotechnology BIOTECHNOLOGY & APPLIED MICROBIOLOGY-
CiteScore
6.90
自引率
12.50%
发文量
90
审稿时长
67 days
期刊介绍: Synthetic and Systems Biotechnology aims to promote the communication of original research in synthetic and systems biology, with strong emphasis on applications towards biotechnology. This journal is a quarterly peer-reviewed journal led by Editor-in-Chief Lixin Zhang. The journal publishes high-quality research; focusing on integrative approaches to enable the understanding and design of biological systems, and research to develop the application of systems and synthetic biology to natural systems. This journal will publish Articles, Short notes, Methods, Mini Reviews, Commentary and Conference reviews.
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