Monoterpenes are valued for their roles as flavors, fragrances, insecticides, and energy-dense fuels. Microorganisms provide sustainable biosynthesis routes for these important molecules, but production levels remain limited. Here, we introduce a biosensor-driven microbial engineering strategy to enhance monoterpene production, specifically targeting geraniol. Using mutagenized libraries of the PYR1 receptorâa versatile biosensor from plant ABA signaling pathways with a malleable binding pocketâwe screened 24 monoterpenes and identified PYR1 variants responsive to eight, including geraniol. A low background, highly selective geraniol-sensitive PYR1 variant was expressed in the thermotolerant yeast Kluyveromyces marxianus as a growth-based biosensor circuit, allowing for rapid strain engineering. By coupling the geraniol-sensitive PYR1 sensor with a genome-wide CRISPR-Cas9 mutagenesis approach, we identified six gene knockouts that enhance geraniol production, achieving up to a 2-fold increase in titer. This study demonstrates the power of the PYR1 biosensor platform to enable rapid strain engineering and the identification of mutants that improve the titer of a desired metabolite.
PYR1 Biosensor-Driven Genome-Wide CRISPR Screens for Improved Monoterpene Production in Kluyveromyces marxianus.
利用 PYR1 生物传感器驱动的全基因组 CRISPR 筛选提高克鲁维酵母单萜的产量
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作者:Robertson Nicholas R, Lenert-Mondou Chase, Leonard Alison C, Tafrishi Aida, Carrera Stephanie, Lee Sangcheon, Aguilar Yuna, Sanchez Zamora Leonardo, Nguyen Trinity, Beltrán Jesús, Li Mengwan, Cutler Sean R, Whitehead Timothy A, Wheeldon Ian
| 期刊: | ACS Synthetic Biology | 影响因子: | 3.900 |
| 时间: | 2025 | 起止号: | 2025 Aug 15; 14(8):2972-2978 |
| doi: | 10.1021/acssynbio.4c00797 | 研究方向: | 其它 |
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