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拓展羟基脂肪酸的生物合成谱:释放新型细菌脂肪酸水合酶的潜力。

Expanding the biosynthesis spectrum of hydroxy fatty acids: unleashing the potential of novel bacterial fatty acid hydratases.

作者信息

Heng Yu Chyuan, Wong Garrett Wei Jie, Kittelmann Sandra

机构信息

Wilmar International Limited, 28 Biopolis Road, Singapore, 138568, Singapore.

Department of Biochemistry, Yong Loo Lin School of Medicine, National University of Singapore, 14 Medical Drive, Singapore, 117599, Singapore.

出版信息

Biotechnol Biofuels Bioprod. 2024 Oct 25;17(1):131. doi: 10.1186/s13068-024-02578-2.

Abstract

BACKGROUND

Hydroxy fatty acids represent an emerging class of compounds with promising applications in the chemical, medicinal and functional food sectors. The challenges associated with their chemical synthesis have spurred exploration of biological synthesis as an alternative route, particularly through the use of fatty acid hydratases. Fatty acid hydratases catalyse the regioselective addition of a hydrogen atom and a hydroxyl group from a water molecule to the carbon-carbon cis-double bond of unsaturated fatty acids to form hydroxy fatty acids. Despite having been discovered in the early 1960s, previous research has primarily focused on characterizing single fatty acid hydratase variants with a limited range of substrates. Comprehensive studies that systematically examine and compare the characteristics of multiple variants of fatty acid hydratases are still lacking.

RESULTS

In this study, we employed an integrated bioinformatics workflow to identify 23 fatty acid hydratases and characterized their activities against nine unsaturated fatty acid substrates using whole-cell biotransformation assays. Additionally, we tested a dual-protein system involving two fatty acid hydratases of distinct regioselectivity and demonstrated its suitability in enhancing the biosynthesis of di-hydroxy fatty acids.

CONCLUSIONS

Our study demonstrates that fatty acid hydratases can be classified into three subtypes based on their regioselectivity and provides insights into their preferred substrate structures. These understandings pave ways for the design of optimal fatty acid hydratase variants and bioprocesses for the cost-efficient biosynthesis of hydroxy fatty acids.

摘要

背景

羟基脂肪酸是一类新兴的化合物,在化学、医药和功能性食品领域有着广阔的应用前景。其化学合成面临的挑战促使人们探索生物合成作为替代途径,特别是通过使用脂肪酸水合酶。脂肪酸水合酶催化水分子中的一个氢原子和一个羟基区域选择性地加成到不饱和脂肪酸的碳 - 碳顺式双键上,形成羟基脂肪酸。尽管早在20世纪60年代就已发现脂肪酸水合酶,但此前的研究主要集中在表征底物范围有限的单一脂肪酸水合酶变体。目前仍缺乏系统研究和比较多种脂肪酸水合酶变体特征的全面研究。

结果

在本研究中,我们采用了一种综合的生物信息学工作流程来鉴定23种脂肪酸水合酶,并使用全细胞生物转化试验表征了它们对九种不饱和脂肪酸底物的活性。此外,我们测试了一种涉及两种区域选择性不同的脂肪酸水合酶的双蛋白系统,并证明了其在增强二羟基脂肪酸生物合成方面的适用性。

结论

我们的研究表明,脂肪酸水合酶可根据其区域选择性分为三种亚型,并深入了解了它们偏好的底物结构。这些认识为设计最佳脂肪酸水合酶变体以及实现羟基脂肪酸经济高效生物合成的生物过程铺平了道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/965b/11515146/61e192507fcb/13068_2024_2578_Fig1_HTML.jpg

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