Beijing National Laboratory for Molecular Sciences, Key Laboratory of Bioorganic Chemistry and Molecular Engineering of Ministry of Education, College of Chemistry and Molecular Engineering, Peking University, Beijing, 100871, People's Republic of China.
Department of Biological Sciences, Xi'an Jiaotong-Liverpool University, Suzhou, 215123, People's Republic of China.
Angew Chem Int Ed Engl. 2024 Jul 22;63(30):e202405833. doi: 10.1002/anie.202405833. Epub 2024 Jun 21.
Nitrogen heterocycles are commonly found in bioactive natural products and drugs. However, the biocatalytic tools for nitrogen heterocycle synthesis are limited. Herein, we report the discovery of vanillyl alcohol oxidases (VAOs) as efficient biocatalysts for the one-pot synthesis of 2-aryl thiazolines from various 4-hydroxybenzaldehydes and aminothiols. The wild-type biocatalyst features a broad scope of 4-hydroxybenzaldehydes. Though the scope of aminothiols is limited, it could be improved via semi-rational protein engineering, generating a variant to produce previously inaccessible cysteine-derived bioactive 2-aryl thiazolines using the wild-type VAO. Benefiting from the derivatizable functional groups in the enzymatic products, we further chemically modified these products to expand the chemical space, offering a new chemoenzymatic strategy for the green and efficient synthesis of structurally diverse 2-aryl-thiazoline derivatives to prompt their use in drug discovery and catalysis.
氮杂环化合物通常存在于生物活性天然产物和药物中。然而,用于氮杂环合成的生物催化工具有限。在此,我们报告了发现香草醇氧化酶(VAO)作为高效生物催化剂,可从各种 4-羟基苯甲醛和氨硫醇一锅法合成 2-芳基噻唑啉。野生型生物催化剂具有广泛的 4-羟基苯甲醛范围。尽管氨硫醇的范围有限,但可以通过半理性蛋白质工程进行改进,生成一个变体,使用野生型 VAO 产生以前无法获得的半胱氨酸衍生的生物活性 2-芳基噻唑啉。得益于酶促产物中可衍生化的官能团,我们进一步对这些产物进行了化学修饰,以扩大化学空间,为结构多样的 2-芳基噻唑啉衍生物的绿色高效合成提供了一种新的化学生物酶策略,以促进其在药物发现和催化中的应用。