State Key Laboratory of Bioreactor Engineering, New World Institute of Biotechnology, East China University of Science and Technology, 130 Meilong Road, P.O.B.311, Shanghai, 200237, China.
Appl Microbiol Biotechnol. 2024 Feb 7;108(1):197. doi: 10.1007/s00253-024-13037-1.
Komagataella phaffii, a nonconventional yeast, is increasingly attractive to researchers owing to its posttranslational modification ability, strict methanol regulatory mechanism, and lack of Crabtree effect. Although CRISPR-based gene editing systems have been established in K. phaffii, there are still some inadequacies compared to the model organism Saccharomyces cerevisiae. In this study, a redesigned gRNA plasmid carrying red and green fluorescent proteins facilitated plasmid construction and marker recycling, respectively, making marker recycling more convenient and reliable. Subsequently, based on the knockdown of Ku70 and DNA ligase IV, we experimented with integrating multiple DNA fragments at a single locus. A 26.5-kb-long DNA fragment divided into 11 expression cassettes for lycopene synthesis could be successfully integrated into a single locus at one time with a success rate of 57%. A 27-kb-long DNA fragment could also be precisely knocked out with a 50% positive rate in K. phaffii by introducing two DSBs simultaneously. Finally, to explore the feasibility of rapidly balancing the expression intensity of multiple genes in a metabolic pathway, a yeast combinatorial library was successfully constructed in K. phaffii using lycopene as an indicator, and an optimal combination of the metabolic pathway was identified by screening, with a yield titer of up to 182.73 mg/L in shake flask fermentation. KEY POINTS: • Rapid marker recycling based on the visualization of a green fluorescent protein • One-step multifragment integration and large fragment knockout in the genome • A random assembly of multiple DNA elements to create yeast libraries in K. phaffii.
毕赤酵母(Komagataella phaffii)是一种非常规酵母,由于其翻译后修饰能力、严格的甲醇调控机制和缺乏 Crabtree 效应,越来越受到研究人员的关注。尽管基于 CRISPR 的基因编辑系统已在毕赤酵母中建立,但与模式生物酿酒酵母相比,仍存在一些不足。在本研究中,一种携带红色和绿色荧光蛋白的重新设计的 gRNA 质粒分别促进了质粒构建和标记回收,使标记回收更加方便和可靠。随后,基于 Ku70 和 DNA 连接酶 IV 的敲低,我们尝试在单个基因座处整合多个 DNA 片段。一个长 26.5kb 的 DNA 片段,分为 11 个用于番茄红素合成的表达盒,可以一次成功整合到单个基因座,成功率为 57%。通过同时引入两个 DSB,也可以以 50%的阳性率精确敲除 K. phaffii 中的 27kb 长的 DNA 片段。最后,为了探索在代谢途径中快速平衡多个基因表达强度的可行性,我们使用番茄红素作为指示剂,在毕赤酵母中成功构建了酵母组合文库,并通过筛选确定了最佳代谢途径组合,在摇瓶发酵中产量高达 182.73mg/L。 关键点: • 基于绿色荧光蛋白可视化的快速标记回收 • 一步法多片段整合和基因组大片段敲除 • 随机组装多个 DNA 元件以在 K. phaffii 中创建酵母文库。