脚手架
组合化学
行动方式
乙醚
班级(哲学)
化学
计算生物学
立体化学
生物
生物化学
计算机科学
人工智能
有机化学
数据库
作者
Christopher A. Kalnmals,Zoltán Benkő,Adel Hamza,Karla Bravo‐Altamirano,Thomas L. Siddall,Moriah Zielinski,Hudson Kagueyama Takano,Dilpreet S. Riar,Norbert M. Satchivi,Joshua J. Roth,Jeffrey B. Church
标识
DOI:10.1021/acs.jafc.3c01285
摘要
We report on the development of a novel class of diaryl ether herbicides. After the discovery of a phenoxybenzoic acid with modest herbicidal activity, optimization led to several molecules with improved control of broadleaf and grass weeds. To facilitate this process, we first employed a three-step combinatorial approach, then pivoted to a one-step Ullmann-type coupling that provided faster access to new analogs. After determining that the primary target site of our benchmark diaryl ethers was acetolactate synthase (ALS), we further leveraged this copper-catalyzed methodology to conduct a scaffold hopping campaign in the hope of uncovering an additional mode of action with fewer documented cases of resistance. Our comprehensive and systematic investigation revealed that while the herbicidal activity of this area seems to be exclusively linked to ALS inhibition, our molecules represent a structurally distinct class of Group 2 herbicides. The structure-activity relationships that led us to this conclusion are described herein.
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