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变形链球菌十一烯醇磷酸激酶在多种非天然异戊烯基化合物的化学酶法合成中的应用。

The utility of Streptococcus mutans undecaprenol kinase for the chemoenzymatic synthesis of diverse non-natural isoprenoids.

机构信息

Department of Chemistry and Biochemistry, University of Oklahoma, 101 Stephenson Parkway, Room 1000, Norman, OK 73019, United States.

Department of Chemistry, University of Minnesota, 207 Pleasant Street SE, Minneapolis, MN 55455, United States.

出版信息

Bioorg Chem. 2024 Oct;151:107707. doi: 10.1016/j.bioorg.2024.107707. Epub 2024 Aug 8.

Abstract

Isoprene chemoenzymatic cascades (ICCs) overcome the complexity of natural pathways by leveraging a streamlined two-enzyme cascade, facilitating efficient synthesis of C5-isoprene diphosphate precursors from readily available alcohol derivatives. Despite the documented promiscuity of enzymes in ICCs, exploration of their potential for accessing novel compounds remains limited, and existing methods require additional enzymes for generating longer-chain diphosphates. In this study, we present the utility of Streptococcus mutans undecaprenol kinase (SmUdpK) for the chemoenzymatic synthesis of diverse non-natural isoprenoids. Using a library of 50 synthetic alcohols, we demonstrate that SmUdpK's promiscuity extends to allylic chains as small as four carbons and benzylic alcohols with various substituents. Subsequently, SmUdpK is utilized in an ICC with isopentenyl phosphate kinase and aromatic prenyltransferase to generate multiple non-natural isoprenoids. This work provides evidence that, with proper optimization, SmUdpK can act as the first enzyme in these ICCs, enhancing access to both valuable and novel compounds.

摘要

异戊烯化学酶级联反应 (ICCs) 通过利用简化的双酶级联反应克服了天然途径的复杂性,促进了从易得的醇衍生物到 C5-异戊烯二磷酸前体的高效合成。尽管 ICC 中的酶具有已知的混杂性,但对其获取新型化合物的潜力的探索仍然有限,并且现有的方法需要额外的酶来生成更长链的二磷酸酯。在这项研究中,我们展示了 Streptococcus mutans 十一碳烯醇激酶 (SmUdpK) 在化学酶合成各种非天然异戊二烯中的应用。使用 50 种合成醇的文库,我们证明 SmUdpK 的混杂性扩展到小至四个碳原子的烯丙基链和具有各种取代基的苄醇。随后,SmUdpK 与异戊烯磷酸激酶和芳基 prenyltransferase 一起用于 ICC 中,以生成多种非天然异戊二烯。这项工作提供了证据表明,经过适当优化,SmUdpK 可以作为这些 ICC 中的第一个酶,增强对有价值和新型化合物的获取。

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