Department of Biological and Chemical Engineering, Faculty of Technical Sciences, Aarhus University, Gustav Wieds Vej 10, Aarhus 8000, Denmark.
Larodan AB, Nobels väg 16, Solna 171 65, Sweden.
J Org Chem. 2024 Jan 19;89(2):1035-1044. doi: 10.1021/acs.joc.3c02131. Epub 2023 Dec 29.
Fatty acid esters of hydroxy fatty acids (FAHFAs), a newly discovered class of human endogenous complex lipids showing great promise for treating diabetes and inflammatory diseases, exist naturally in extremely low concentrations. This work reports a chemo-enzymatic approach for the comprehensive synthesis of phospholipids containing FAHFAs via sequential steps: hydratase-catalyzed hydration of unsaturated fatty acids to generate structurally diverse hydroxy fatty acids (HFAs), followed by the selective esterification of these HFAs with fatty acids mediated by secondary alcohol-specific lipase A (CALA), resulting in the formation of a series of diverse FAHFA analogs. The final synthesis is completed through carbodiimide-based coupling of FAHFAs with glycerophosphatidylcholine. Optimal reaction conditions are identified for each step, and the substrate affinity of CALA, responsible for the catalytic mechanisms during FAHFA production, is evaluated through molecular docking. Compared to multistep lab-tedious chemical synthesis, this route, relying on natural building blocks and natural biocatalysts, is significantly facile, scalable, and highly selective, affording high yields (74-98 mol %) in each step for the construction of higher FAHFA-PC series (10/12/13-FAHFAs). The developed strategy aims to increase the availability of naturally occurring FAHFA species and provide the tools for the construction of versatile and novel analogs of FAHFA conjugates.
羟基脂肪酸的脂肪酸酯(FAHFAs)是一类新发现的人类内源性复合脂质,具有治疗糖尿病和炎症性疾病的巨大潜力,在自然界中以极低的浓度存在。本工作报道了一种通过顺序步骤综合合成含 FAHFAs 的磷脂的化学-酶法:不饱和脂肪酸在水合酶的催化下水化生成结构多样的羟基脂肪酸(HFAs),然后由二级醇特异性脂肪酶 A(CALA)介导这些 HFAs 与脂肪酸的选择性酯化,生成一系列不同的 FAHFA 类似物。最后通过 FAHFAs 与甘油磷酸胆碱的碳二亚胺基偶联完成最终合成。确定了每一步的最佳反应条件,并通过分子对接评估了负责 FAHFA 生成过程中催化机制的 CALA 的底物亲和力。与多步繁琐的化学合成相比,该路线依赖于天然构建块和天然生物催化剂,显著简单、可扩展且高度选择性,为构建更高的 FAHFA-PC 系列(10/12/13-FAHFAs)提供了每步高达 74-98mol%的高收率。所开发的策略旨在增加天然存在的 FAHFA 种类的可用性,并为构建多功能和新型 FAHFA 缀合物提供工具。