Schmidt Matthias, Vilchez Aaron A, Lee Namil, Keiser Leah S, Pearson Allison N, Thompson Mitchell G, Zhu Yolanda, Haushalter Robert W, Deutschbauer Adam M, Yuzawa Satoshi, Blank Lars M, Keasling Jay D
Joint BioEnergy Institute, 5885 Hollis Street, Emeryville, CA 94608, USA.
Biological Systems & Engineering Division, Lawrence Berkeley National Laboratory, Berkeley, CA, 94720, USA.
Metab Eng Commun. 2025 Apr 2;20:e00261. doi: 10.1016/j.mec.2025.e00261. eCollection 2025 Jun.
Engineered type I polyketide synthases (T1PKSs) are a potentially transformative platform for the biosynthesis of small molecules. Due to their modular nature, T1PKSs can be rationally designed to produce a wide range of bulk or specialty chemicals. While heterologous PKS expression is best studied in microbes of the genus , recent studies have focused on the exploration of non-native PKS hosts. The biotechnological production of chemicals in fast growing and industrial relevant hosts has numerous economic and logistic advantages. With its native ability to utilize alternative feedstocks, has emerged as a promising workhorse for the sustainable production of small molecules. Here, we outline the assessment of as a host for the expression of engineered T1PKSs and production of 3-hydroxyacids. After establishing the functional expression of an engineered T1PKS, we successfully expanded and increased the pool of available acyl-CoAs needed for the synthesis of polyketides using transposon sequencing and protein degradation tagging. This work demonstrates the potential of T1PKSs in as a production platform for the sustainable biosynthesis of unnatural polyketides.
工程化I型聚酮合酶(T1PKSs)是小分子生物合成中一个具有潜在变革性的平台。由于其模块化性质,T1PKSs可以经过合理设计来生产多种大宗或特殊化学品。虽然异源PKS表达在[具体属名]属微生物中研究得最为深入,但最近的研究集中在探索非天然PKS宿主。在快速生长且与工业相关的宿主中进行化学品的生物技术生产具有诸多经济和物流优势。凭借其利用替代原料的天然能力,[具体物种名]已成为可持续生产小分子的一个有前景的主力宿主。在此,我们概述了对[具体物种名]作为工程化T1PKSs表达宿主及3 - 羟基酸生产宿主的评估。在建立了工程化T1PKS的功能性表达后,我们利用转座子测序和蛋白质降解标签成功地扩展并增加了合成聚酮所需的可用酰基辅酶A库。这项工作证明了T1PKSs在[具体物种名]中作为非天然聚酮可持续生物合成生产平台的潜力。