Institute of Biochemistry and Technical Biochemistry, University of Stuttgart, Stuttgart-Vaihingen, Germany.
Institute of Thermodynamics and Thermal Process Engineering, University of Stuttgart, Stuttgart-Vaihingen, Germany.
Nat Commun. 2024 Jun 10;15(1):4925. doi: 10.1038/s41467-024-48993-9.
Terpene synthesis stands at the forefront of modern synthetic chemistry and represents the state-of-the-art in the chemist's toolbox. Notwithstanding, these endeavors are inherently tied to the current availability of natural cyclic building blocks. Addressing this limitation, the stereocontrolled cyclization of abundant unbiased linear terpenes emerges as a valuable tool, which is still difficult to achieve with chemical catalysts. In this study, we showcase the remarkable capabilities of squalene-hopene cyclases (SHCs) in the chemoenzymatic synthesis of head-to-tail-fused terpenes. By combining engineered SHCs and a practical reaction setup, we generate ten chiral scaffolds with >99% ee and de, at up to decagram scale. Our mechanistic insights suggest how cyclodextrin encapsulation of terpenes may influence the performance of the membrane-bound enzyme. Moreover, we transform the chiral templates to valuable (mero)-terpenes using interdisciplinary synthetic methods, including a catalytic ring-contraction of enol-ethers facilitated by cooperative iodine/lipase catalysis.
萜类化合物的合成处于现代合成化学的前沿,代表了化学家工具包的最新水平。然而,这些努力本质上与当前天然环状构建块的可用性有关。为了解决这一限制,丰富的无偏线性萜类化合物的立体控制环化成为一种有价值的工具,但用化学催化剂仍然难以实现。在这项研究中,我们展示了鲨烯-法呢烯环化酶(SHC)在从头至尾融合萜类化合物的化学酶合成中的卓越能力。通过结合工程化的 SHC 和实用的反应装置,我们以高达 10 克的规模生成了十个具有>99%ee 和 de 的手性支架。我们的机理研究表明萜类化合物的环糊精包合如何影响膜结合酶的性能。此外,我们使用跨学科的合成方法将手性模板转化为有价值的(差向)萜类化合物,包括协同碘/脂肪酶催化促进的烯醚的催化环收缩。