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发现甲硫四唑:鉴定四唑啉酮药效团以克服 QoI 抗性。

Discovery of metyltetraprole: Identification of tetrazolinone pharmacophore to overcome QoI resistance.

机构信息

Health and Crop Sciences Research Laboratory, Sumitomo Chemical Co., Ltd., Takarazuka, Japan.

Health and Crop Sciences Research Laboratory, Sumitomo Chemical Co., Ltd., Takarazuka, Japan.

出版信息

Bioorg Med Chem. 2020 Jan 1;28(1):115211. doi: 10.1016/j.bmc.2019.115211. Epub 2019 Nov 9.

Abstract

Quinone outside inhibitors (QoIs) are one of the major agricultural fungicide groups used worldwide. However, the development of resistance by different pathogenic species associated with specific mutation at the target gene site is becoming a critical issue for the sustainable use of QoIs. The authors aimed to design a novel QoI molecule to overcome the aforementioned issue. A rational approach to avoid steric hindrance between the QoI molecule and the mutated target site was successfully employed. The resulting compound, metyltetraprole, is characterized by 3-substituted central ring with a tetrazolinone moiety, the key structure to retain potent activity against QoI-resistant mutants. Metyltetraprole is a promising new fungicide under commercial development, and its development in this study has paved the way to overcoming resistance to QoI fungicides.

摘要

醌外抑制剂(QoIs)是全球范围内使用的主要农业杀菌剂之一。然而,与靶基因位点特定突变相关的不同致病物种对 QoIs 的抗性发展成为可持续使用 QoIs 的一个关键问题。作者旨在设计一种新型 QoI 分子来克服上述问题。成功采用了一种合理的方法来避免 QoI 分子与突变靶位之间的空间位阻。所得化合物甲基四唑,其特征为具有四唑啉酮部分的中央三环 3-取代,该关键结构保留了对 QoI 抗性突变体的有效活性。甲基四唑是一种有前景的新型正在商业开发的杀菌剂,本研究中的开发为克服 QoI 杀菌剂的抗性铺平了道路。

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