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在克氏锥虫中构建细胞工厂:一种用于生产高价值多不饱和脂肪酸的生物可持续系统。

Building a cell-factory in Crithidia fasciculata: a bio-sustainable system to produce high-value polyunsaturated fatty acids.

作者信息

Cerone Michela, Major Louise L, Smith Terry K

机构信息

Schools of Chemistry and Biology, Biomedical Science Research Complex, North Haugh, University of St Andrews, St Andrews, Fife, Scotland, KY16 9ST, UK.

出版信息

Microb Cell Fact. 2025 Jun 23;24(1):142. doi: 10.1186/s12934-025-02760-7.

Abstract

Fatty acids (FAs) are a class of diverse biomolecules that are essential for a wide variety of biological processes. Recently, ω-3 and ω-6 polyunsaturated FAs (PUFAs) have received a lot of attention for their benefit and essentiality to human health. Their demand is constantly increasing alongside the ever-decreasing availability of sources of natural PUFAs, such as some plants and marine ecosystems, which are now endangered by agribusiness and climate change. Most of the novel microbial synthetic platforms to produce ω-3 and ω-6 PUFAs (e.g. yeast, microalgae, oleaginous microorganisms, bacteria etc.) are costly. On the other hand, industrial processes based on chemical total synthesis of PUFAs is often challenging. Here, we propose an innovative and bio-sustainable method to make ω-3 and ω-6 PUFAs by building a cell-factory in Crithidia fasciculata, using genetic manipulation of endogenous FA desaturases and elongases, supplementation of the culture media with cheap sources of fats (such as used cooking oils), and culturing temperature reduction. In these unusual environments, C. fasciculata show high adaptability: the cells grow rapidly producing large biomass from small volumes of culture, scavenge and remodel unusual fat sources, as well as biosynthesising high value FAs and PUFAs de novo. By genetic manipulation, allowing overexpression of either the endogenous Δ6-desaturases or Δ4-desaturases, in conjunction with the endogenous elongase Elo4, high value ω-6 and ω-3 PUFAs were yielded to a maximum of 50% of the total FA content of the cells. These bioengineered C. fasciculata provide a low-cost and bio-sustainable platform to increase the production of essential PUFAs which can be introduced into the food chain at lower costs.

摘要

脂肪酸(FAs)是一类多样的生物分子,对多种生物过程至关重要。最近,ω-3和ω-6多不饱和脂肪酸(PUFAs)因其对人类健康的益处和必要性而备受关注。随着天然PUFAs来源(如一些植物和海洋生态系统)的可用性不断下降,而这些来源目前正受到农业综合企业和气候变化的威胁,对它们的需求却在持续增加。大多数用于生产ω-3和ω-6 PUFAs的新型微生物合成平台(如酵母、微藻、产油微生物、细菌等)成本高昂。另一方面,基于PUFAs化学全合成的工业过程往往具有挑战性。在此,我们提出一种创新的、生物可持续的方法来生产ω-3和ω-6 PUFAs,即在纤细眼虫(Crithidia fasciculata)中构建细胞工厂,利用内源性脂肪酸去饱和酶和延长酶的基因操作,用廉价的脂肪来源(如用过的食用油)补充培养基,并降低培养温度。在这些特殊环境中,纤细眼虫表现出高度的适应性:细胞生长迅速,能从小体积培养物中产生大量生物量,清除和重塑不寻常的脂肪来源,以及从头生物合成高价值的脂肪酸和PUFAs。通过基因操作,使内源性Δ6-去饱和酶或Δ4-去饱和酶与内源性延长酶Elo4一起过表达,产生的高价值ω-6和ω-3 PUFAs最多可达细胞总脂肪酸含量的50%。这些经过生物工程改造的纤细眼虫提供了一个低成本且生物可持续的平台,以增加必需PUFAs的产量,这些PUFAs能够以更低的成本引入食物链。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bf93/12183914/ff1042a4e0a5/12934_2025_2760_Fig1_HTML.jpg

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