State Key Laboratory for Biology of Plant Diseases and Insect Pests, Institute of Plant Protection, Chinese Academy of Agricultural Sciences, Beijing, China.
Pest Manag Sci. 2019 Nov;75(11):3024-3030. doi: 10.1002/ps.5417. Epub 2019 Apr 26.
Phytophthora capsici is a devastating pathogen for crop. Cellulose synthase 3 (CesA3) is a target for many potential fungicides such as valinamide derivatives. However, the 3-dimensional structure (3-DS) of CesA3 in Phytophthora capsici was still unknown.
Here CesA3 protein sequence was retrieved from the NCBI protein sequence database We did the 3-DS structural modeling for CesA3 and used molecular dynamics to optimize the model. The model was further validated by the Ramachandran plot in PROCHECK program. Two series of new valinamide compound were synthesized and tested for its biological activity. The docking data obtained by the model perfectly matched with the biometric data, indicating that the model is valid. Moreover, docking study data revealed the mechanism of action of inhibitors on target enzymes.
The 3-DS structural model was analyzed from the perspective of the biocide receptor, the structure of the target protein and the mechanism of action of the compound. It provides a new perspective for the design of new fungicides. © 2019 Society of Chemical Industry.
辣椒疫霉是一种危害作物的毁灭性病原菌。纤维素合酶 3(CesA3)是许多潜在杀菌剂(如缬氨酰胺衍生物)的作用靶点。然而,辣椒疫霉中的 CesA3 的三维结构(3-DS)仍然未知。
从 NCBI 蛋白质序列数据库中检索到 CesA3 蛋白质序列。我们对 CesA3 进行了 3-DS 结构建模,并使用分子动力学对模型进行了优化。该模型进一步通过 PROCHECK 程序中的 Ramachandran 图进行了验证。合成了两系列新的缬氨酰胺化合物,并测试了它们的生物活性。模型获得的对接数据与生物计量数据完全吻合,表明该模型是有效的。此外,对接研究数据揭示了抑制剂对靶酶的作用机制。
从杀菌剂受体、靶蛋白结构和化合物作用机制的角度对 3-DS 结构模型进行了分析。它为新杀菌剂的设计提供了新的视角。© 2019 化学工业协会。