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真菌黑色素的环丁烷甲酰胺抑制剂:生物合成及其作为杀菌剂的评价

Cyclobutane carboxamide inhibitors of fungal melanin: biosynthesis and their evaluation as fungicides.

作者信息

Jennings L D, Rayner D R, Jordan D B, Okonya J F, Basarab G S, Amorose D K, Anaclerio B M, Lee J K, Schwartz R S, Whitmore K A

机构信息

DuPont Agricultural Products, Stine Haskell Research Center, Newark, DE 19714, USA.

出版信息

Bioorg Med Chem. 2000 May;8(5):897-907. doi: 10.1016/s0968-0896(00)00034-1.

Abstract

A new fungicide lead has been identified by enzyme screening of a focused combinatorial library. The lead compound 4, a potent inhibitor of scytalone dehydratase (SD), exhibits fungicidal activity upon foliar application but does not show systemic activity. The X-ray crystal structure of the enzyme-inhibitor complex and an appreciation for the relationship between physical properties and systemic activity enabled us to rapidly improve upon this initial lead. The geminal halogen-methyl group combination was found to be optimal for interaction with the bounding serine and asparagine side-chain residues. Replacement of CF3 with methyl was a key discovery, giving inhibitors with slightly diminished enzyme inhibition potency while significantly increasing systemic activity. Amides prepared from amines with 2,4-dichloro substitution on the phenyl ring gave the most potent enzyme inhibitors. Two compounds from this series showed systemic activity comparable to the commercial standard and were selected for outdoor testing in flooded plots which simulate rice paddies.

摘要

通过对一个聚焦组合文库进行酶筛选,已鉴定出一种新型杀真菌剂先导化合物。先导化合物4是细胞松弛素脱水酶(SD)的有效抑制剂,叶面施用时具有杀真菌活性,但不具有内吸活性。酶-抑制剂复合物的X射线晶体结构以及对物理性质与内吸活性之间关系的认识使我们能够迅速改进这一初始先导化合物。发现偕二卤甲基组合对于与结合的丝氨酸和天冬酰胺侧链残基相互作用最为理想。用甲基取代CF3是一项关键发现,得到的抑制剂对酶的抑制效力略有降低,但内吸活性显著提高。由在苯环上具有2,4-二氯取代的胺制备的酰胺产生了最有效的酶抑制剂。该系列中的两种化合物表现出与商业标准相当的内吸活性,并被选用于模拟稻田的淹水地块进行户外测试。

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