Department of Chemistry, College of Arts and Sciences, Northeast Agricultural University, Harbin 150030, China.
Department of Chemistry, College of Arts and Sciences, Northeast Agricultural University, Harbin 150030, China.
Pestic Biochem Physiol. 2022 Jun;184:105109. doi: 10.1016/j.pestbp.2022.105109. Epub 2022 Apr 22.
4-Hydroxyphenylpyruvate dioxygenase (HPPD) is an important target for herbicide design. A multilayered virtual screening workflow was constructed by combining two pharmacophore models based on ligand and crystal complexes, molecular docking, molecular dynamics (MD), and biological activity determination to identify novel small-molecule inhibitors of HPPD. About 110, 000 compounds of Bailingwei and traditional Chinese medicine databases were screened. Of these, 333 were analyzed through docking experiments. Five compounds were selected by analyzing the binding pattern of inhibitors with amino acid residues in the active pocket. All five compounds could produce stable coordination with cobalt ion, and form favorable π-π interactions. MD simulation demonstrated that Phe381 and Phe424 made large contributions to the strength of binding. The enzyme activity experiment verified that compound-139 displayed excellent potency against AtHPPD (IC = 0.742 μM), however, compound-5222 had inhibitory effect on human HPPD (IC = 6 nM). Compound-139 exhibited herbicidal activity to some extent on different gramineous weeds. This work provided a strong insight into the design and development of novel HPPD inhibitor using in silico techniques.
4- 羟苯基丙酮酸双加氧酶(HPPD)是除草剂设计的重要靶标。通过结合基于配体和晶体复合物的两种药效团模型、分子对接、分子动力学(MD)和生物活性测定,构建了一个多层次的虚拟筛选工作流程,以鉴定 HPPD 的新型小分子抑制剂。从百灵威和中药数据库中筛选了约 110000 种化合物。其中,通过对接实验分析了 333 种化合物。通过分析抑制剂与活性口袋中氨基酸残基的结合模式,选择了 5 种化合物。这 5 种化合物都可以与钴离子产生稳定的配位,并形成有利的π-π相互作用。MD 模拟表明,Phe381 和 Phe424 对结合强度有很大贡献。酶活性实验验证了化合物-139 对 AtHPPD 具有优异的抑制活性(IC=0.742μM),而化合物-5222 对人 HPPD 具有抑制作用(IC=6nM)。化合物-139 在不同的禾本科杂草上表现出一定的除草活性。这项工作为使用计算技术设计和开发新型 HPPD 抑制剂提供了深入的见解。