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(+)-雅华醇及相关倍半萜类化合物的便捷可扩展合成及抗真菌研究。

Expediently Scalable Synthesis and Antifungal Exploration of (+)-Yahazunol and Related Meroterpenoids.

机构信息

Department of Pesticide Science, College of Plant Protection , Nanjing Agricultural University , Weigang 1 , Xuanwu District, Nanjing 210095 , People's Republic of China.

R & D Center , Jiangsu New Energy Crop Protection Co., Ltd. , 5 Xinmofan Road , Nanjing 210009 , People's Republic of China.

出版信息

J Nat Prod. 2018 Sep 28;81(9):2010-2017. doi: 10.1021/acs.jnatprod.8b00310. Epub 2018 Sep 12.

Abstract

The efficient synthesis and antifungal exploration of (+)-yahazunol and related natural products are described. Central to this strategy is the Barton decarboxylative coupling, comprising a one-pot radical decarboxylation and quinone addition cascade. The scalable synthesis of (+)-yahazunol was accomplished in five longest linear sequences (LLS) starting from commercially available and inexpensive (-)-sclareol. The divergent translational potential of (+)-yahazunol was demonstrated by the expedient preparation of (-)-zonarone, (-)-isozonarone, (-)-zonarol, (-)-isozonarol, (+)-chromazonarol, and (+)-yahazunone. This approach also enables the formal synthesis of puupehenol, puupehedione, and hongoquercin A. Antifungal evaluation was performed, and this represents the first biological profiles for (+)-yahazunone, (+)-8- O-acetylyahazunone, and (+)-8- O-acetylyahazunol. (+)-Chromazonarol and (+)-yahazunone are promising candidates against Sclerotinia scleotiorum, with EC values of 24.1 and 28.7 μM, respectively, demonstrating advantages over the original model (DM) and synthesized heterocyclic mimic (3a) of meroterpenoids. This will favor the establishment of a chemical repertoire in the management of different plant diseases.

摘要

描述了 (+)-yahazunol 和相关天然产物的高效合成和抗真菌探索。该策略的核心是 Barton 脱羧偶联反应,包括一锅自由基脱羧和醌加成级联反应。从商业上可获得且廉价的 (-)-sclareol 出发,通过五个最长线性序列(LLS)完成了 (+)-yahazunol 的可扩展合成。通过简便制备 (-)-zonarone、(-)-isozonarone、(-)-zonarol、(-)-isozonarol、(+) -chromazonarol 和 (+)-yahazunone,展示了 (+)-yahazunol 的发散转化潜力。该方法还可实现 puupehenol、puupehedione 和 hongoquercin A 的形式合成。进行了抗真菌评估,这代表了 (+)-yahazunone、(+) -8-O-乙酰基-yahazunone 和 (+)-8-O-乙酰基-yahazunol 的首次生物学特征。(+) -chromazonarol 和 (+)-yahazunone 是对抗核盘菌的有前途的候选药物,其 EC 值分别为 24.1 和 28.7 μM,优于原始模型(DM)和合成的杂环类似物(3a)。这将有利于建立不同植物病害管理的化学库。

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