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锆催化二聚作用实现细胞色霉素A和B的简洁合成

Concise Synthesis of Cyctetryptomycin A and B Enabled by Zr-Catalyzed Dimerization.

作者信息

Yu Longhui, Ogawa Hiroshige, Li Shangzhao, Lam Cheung Tsoh, Liu Wenchao, Yan Dexiu, Matsuda Yudai, Kobayashi Yusuke, Guo Zhihong, Ikeda Kotaro, Hamlin Trevor A, Yamazaki Ken, Qian Pei-Yuan, Nakamura Hugh

机构信息

The Hong Kong University of Science and Technology (HKUST), Clear Water Bay, Kowloon, Hong Kong SAR, China.

Southern Marine Science and Engineering Guangdong Laboratory (Guangzhou), Nansha, Guangzhou, China.

出版信息

Angew Chem Int Ed Engl. 2025 Jan 10;64(2):e202414295. doi: 10.1002/anie.202414295. Epub 2024 Nov 6.

Abstract

A concise synthetic strategy utilizing a Zr catalyst for the construction of cyctetryptomycin A and B is reported. Cyctetryptomycin A and B are recently isolated, complex tetrameric natural products for which total synthesis has not been previously reported. This study presents a practical approach for the construction of two consecutive quaternary carbon centers with a Zr catalyst. Furthermore, the first total synthesis of cyctetryptomycin A and B was achieved by this Zr-catalyzed radical coupling. The radical dimerization reaction mediated by the Zr catalyst required 1,2-bis(diphenylphosphino)ethane (dppe) as an indispensable additive. Through both experimental and theoretical investigations into the mechanism of this Zr-catalyzed reaction, the specific role of dppe was elucidated. In addition, the synthetic approach was extended to enable the practical synthesis of other dimeric natural products, including tetratryptomycin A, dibrevianamide F, and ditryptophenaline. Finally, the synthetic mechanism of cyctetryptomycin A and B, through the oxidative macrocyclization of tetratryptomycin A by CttpC, was newly elucidated by both experimental and docking simulations.

摘要

报道了一种利用锆催化剂构建环色氨酸霉素A和B的简洁合成策略。环色氨酸霉素A和B是最近分离得到的复杂四聚体天然产物,此前尚未有其全合成的报道。本研究提出了一种利用锆催化剂构建两个连续季碳中心的实用方法。此外,通过这种锆催化的自由基偶联实现了环色氨酸霉素A和B的首次全合成。锆催化剂介导的自由基二聚反应需要1,2 - 双(二苯基膦基)乙烷(dppe)作为不可或缺的添加剂。通过对该锆催化反应机理的实验和理论研究,阐明了dppe的具体作用。此外,该合成方法得以扩展,能够实际合成其他二聚体天然产物,包括四色氨酸霉素A、二短杆菌肽F和双色氨酸碱。最后,通过实验和对接模拟新阐明了环色氨酸霉素A和B通过CttpC对四色氨酸霉素A进行氧化大环化的合成机理。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d2e3/11720396/b4db0ebe12ff/ANIE-64-e202414295-g004.jpg

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