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通过抗疟药物库筛选优化物理化学规则以改进除草剂发现。

Improved herbicide discovery using physico-chemical rules refined by antimalarial library screening.

作者信息

Sukhoverkov Kirill V, Corral Maxime G, Leroux Julie, Haywood Joel, Johnen Philipp, Newton Trevor, Stubbs Keith A, Mylne Joshua S

机构信息

The University of Western Australia, School of Molecular Sciences 35 Stirling Highway, Crawley Perth 6009 Australia

The ARC Centre of Excellence in Plant Energy Biology 35 Stirling Highway, Crawley Perth 6009 Australia.

出版信息

RSC Adv. 2021 Feb 23;11(15):8459-8467. doi: 10.1039/d1ra00914a.

Abstract

Herbicides have physico-chemical properties not unlike orally-delivered human drugs, but are known to diverge in their limits for proton donors, partition coefficients and molecular weight. To further refine rules specific for herbicides, we exploited the close evolutionary relationship between and plants by screening the entire Malaria Box, a chemical library of novel chemical scaffolds with activity against the blood stage of . Initial screening against on agar media and subsequently on soil demonstrated the crucial nature of log  and formal charge are to active molecules. Using this information, a weighted scoring system was applied to a large chemical library of liver-stage effective antimalarial leads, and of the six top-scoring compounds, one had potency comparable to that of commercial herbicides. This novel compound, MMV1206386, has no close structural analogues among commercial herbicides. Physiological profiling suggested that MMV1206386 has a new mode of action and overall demonstrates how weighted rules can help during herbicide discovery programs.

摘要

除草剂具有与口服人类药物相似的物理化学性质,但已知它们在质子供体的限度、分配系数和分子量方面存在差异。为了进一步完善针对除草剂的特定规则,我们利用了疟原虫与植物之间密切的进化关系,通过筛选整个疟疾盒(一个具有针对疟原虫血液阶段活性的新型化学支架的化学文库)。最初在琼脂培养基上然后在土壤上针对疟原虫进行筛选,证明了logP和形式电荷对活性分子的关键性质。利用这些信息,将加权评分系统应用于一个大型的肝期有效抗疟先导化合物化学文库,在六个得分最高的化合物中,有一个的效力与商业除草剂相当。这种新型化合物MMV1206386在商业除草剂中没有紧密的结构类似物。生理分析表明,MMV1206386具有一种新的作用模式,总体上证明了加权规则在除草剂发现计划中如何发挥帮助作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d4fb/8695207/33500e36fdcd/d1ra00914a-f1.jpg

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