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新型酚类酰腙衍生物对植物病原菌漆酶的抑制作用:构效关系和分子对接研究。

Inhibitory Potential of New Phenolic Hydrazide-Hydrazones with a Decoy Substrate Fragment towards Laccase from a Phytopathogenic Fungus: SAR and Molecular Docking Studies.

机构信息

Department of Micro, Nano and Bioprocess Engineering, Faculty of Chemistry, Wroclaw University of Science and Technology, Norwida 4/6, 50-373 Wrocław, Poland.

Department of Bioorganic Chemistry, Faculty of Chemistry, Wroclaw University of Science and Technology, Wybrzeże Wyspiańskiego 27, 50-370 Wrocław, Poland.

出版信息

Int J Mol Sci. 2021 Nov 14;22(22):12307. doi: 10.3390/ijms222212307.

Abstract

Laccase from pathogenic fungi participates in both the delignification and neutralization of phytoantibiotics. Furthermore, it interferes with the hormone signaling in plants and catalyzes melanization. Infections of these pathogens contribute to loss in forestry, agriculture, and horticulture. As there is still a need to expand knowledge on efficient defense strategies against phytopathogenic fungi, the present study aimed to reveal more information on the molecular mechanisms of laccase inhibition with natural and natural-like carboxylic acid semi-synthetic derivatives. A set of hydrazide-hydrazones derived from carboxylic acids, generally including electron-rich arene units that serve as a decoy substrate, was synthesized and tested with laccase from . The classic synthesis of the title inhibitors proceeded with good to almost quantitative yield. Ninety percent of the tested molecules were active in the range of = 8-233 µM and showed different types of action. Such magnitude of inhibition constants qualified the hydrazide-hydrazones as strong laccase inhibitors. Molecular docking studies supporting the experimental data explained the selected derivatives' interactions with the enzyme. The results are promising in developing new potential antifungal agents mitigating the damage scale in the plant cultivation, gardening, and horticulture sectors.

摘要

致病真菌中的漆酶参与木质素的脱除和植物抗生素的中和。此外,它还干扰植物中的激素信号传导,并催化黑色素化。这些病原体的感染导致林业、农业和园艺业的损失。由于仍有必要扩展对植物病原真菌的有效防御策略的知识,本研究旨在揭示更多关于天然和类天然羧酸半合成衍生物抑制漆酶的分子机制的信息。一组由羧酸衍生的酰腙,通常包括作为诱饵底物的富电子芳烃单元,被合成并与 中的漆酶进行了测试。标题抑制剂的经典合成以良好到几乎定量的产率进行。90%的测试分子在 = 8-233 µM 的范围内具有活性,并表现出不同类型的作用。这种抑制常数的幅度使酰腙成为强漆酶抑制剂。支持实验数据的分子对接研究解释了所选衍生物与酶的相互作用。这些结果有希望开发新的潜在抗真菌剂,减轻植物栽培、园艺和园艺领域的破坏规模。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a6b7/8617976/6657f78380f6/ijms-22-12307-g001.jpg

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