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通过对柠檬烯合酶进行定向工程改造提高(+)-柠檬烯的产量。

Enhanced Production of (+)-Limonene through Targeted Engineering of Limonene Synthase.

作者信息

Scipion Clement P M, Esque Jérémy, Borkar Shreyash, Ong Jing Sen, Seah Cristalle, Ong Leonard, Ng Pnelope, Kanagasundaram Yoganathan, Remaud-Simeon Magali, Bozonnet Sophie, Xue Bo, Yew Wen Shan, André Isabelle, Chen Xixian

机构信息

CNRS@CREATE, 1 Create Way, #08-01 Create Tower, Singapore 138602.

Singapore Institute of Food and Biotechnology Innovation (SIFBI), Agency for Science, Technology and Research (A*STAR), 31 Biopolis Way, Nanos, Singapore 138669.

出版信息

ACS Synth Biol. 2025 Jun 20;14(6):2151-2161. doi: 10.1021/acssynbio.5c00078. Epub 2025 May 28.

Abstract

Limonene is a high-value monoterpene with numerous industrial applications including flavors, fragrances, and pharmaceuticals. Its biosynthesis in microbes is often limited by limonene synthase and can be enhanced through targeted enzyme engineering. This study aims to optimize the limonene synthase (CsLS) in order to boost (+)-limonene yield. Site-saturation mutagenesis was carried out to create a library of truncated CsLS variants, which were evaluated for their enzymatic activity, enantioselectivity, and kinetic properties. Through medium-throughput screening, a mutant, tCsLS-Q8K, was found to improve limonene production by 2.1-fold. Bioreactor experiments with this optimized mutant, in combination with the S80F mutation to enhance monoterpene precursor availability, achieved a (+)-limonene titer of 4.9 g/L, representing the highest production level of limonene reported to date. This work not only deepens our understanding of CsLS function but also offers a scalable approach to enhanced (+)-limonene production. The findings underscore the potential of enzyme engineering and pathway optimization to transform biotechnological processes, significantly impacting the commercial viability of the flavor and fragrance industries.

摘要

柠檬烯是一种具有多种工业应用的高价值单萜,包括香料、香精和制药。其在微生物中的生物合成通常受柠檬烯合酶的限制,可通过靶向酶工程来增强。本研究旨在优化柠檬烯合酶(CsLS)以提高(+)-柠檬烯产量。进行了位点饱和诱变以创建截短的CsLS变体文库,并对其酶活性、对映选择性和动力学性质进行评估。通过中通量筛选,发现一个突变体tCsLS-Q8K可将柠檬烯产量提高2.1倍。使用这种优化的突变体进行生物反应器实验,并结合S80F突变以提高单萜前体的可用性,实现了4.9 g/L的(+)-柠檬烯滴度,这是迄今为止报道的最高柠檬烯生产水平。这项工作不仅加深了我们对CsLS功能的理解,还提供了一种可扩展的方法来提高(+)-柠檬烯的产量。这些发现强调了酶工程和途径优化在改造生物技术过程中的潜力,对香料和香精行业的商业可行性产生重大影响。

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