State Key Laboratory Breeding Base of Green Pesticide and Agricultural Bioengineering, Key Laboratory of Green Pesticide and Agricultural Bioengineering, Ministry of Education, Guizhou University, Huaxi District, Guiyang, Guizhou 550025, People's Republic of China.
J Agric Food Chem. 2021 Nov 3;69(43):12891-12899. doi: 10.1021/acs.jafc.1c03586. Epub 2021 Oct 25.
Novel acylurea derivatives - were designed and synthesized by linking the active substructures trifluoromethylpyridine and anthranilic diamide via an acylurea bridge. Most of the title compounds exhibited good activity against tobacco mosaic virus (TMV), particularly compound (EC of 211.8 μg/mL), which showed much higher curative activity than ningnanmycin (EC of 389.8 μg/mL), and compound , which showed excellent inactivation activity (EC of 36.1 μg/mL), similar to ningnanmycin (EC of 23.2 μg/mL). The preliminary mechanism of these derivatives was investigated. Autodocking analysis revealed that compounds and had good affinity for TMV coat protein (TMV CP), with low binding energies (-7.86 and -8.59 kcal/mol) comparable to ningnanmycin (-8.75 kcal/mol). Molecular dynamics simulation showed that compound had a stable system structure with a better binding free energy (-32.94 kcal/mol) than ningnanmycin (-25.62 kcal/mol). Microscale thermophoresis showed that compound bound more strongly to TMV CP ( of 19.8 ± 7.3 μM) than ningnanmycin ( of 21.2 ± 7.3 μM). Transmission electron microscopy and self-assembly experiments demonstrated that compounds and significantly obstructed the self-assembly of TMV RNA and TMV CP. This new acylurea derivative has excellent antiviral activity by targeting TMV CP and inhibiting TMV self-assembly and can be considered a candidate for antiviral applications.
新型酰脲衍生物 - 通过酰脲桥将活性亚结构三氟甲基吡啶和邻氨基苯甲酰胺连接起来而设计和合成。大多数标题化合物对烟草花叶病毒(TMV)表现出良好的活性,特别是化合物 (EC 为 211.8 μg/mL),其治疗活性明显高于宁南霉素(EC 为 389.8 μg/mL),而化合物 则表现出极好的失活活性(EC 为 36.1 μg/mL),与宁南霉素(EC 为 23.2 μg/mL)相当。这些衍生物的初步机制进行了研究。自动对接分析表明,化合物 和 与 TMV 外壳蛋白(TMV CP)具有良好的亲和力,结合能低(-7.86 和 -8.59 kcal/mol),与宁南霉素(-8.75 kcal/mol)相当。分子动力学模拟表明,化合物 具有稳定的系统结构,其结合自由能(-32.94 kcal/mol)优于宁南霉素(-25.62 kcal/mol)。微量热泳动显示,化合物 与 TMV CP 的结合力更强( of 19.8 ± 7.3 μM),比宁南霉素( of 21.2 ± 7.3 μM)更强。透射电子显微镜和自组装实验表明,化合物 和 显著阻碍了 TMV RNA 和 TMV CP 的自组装。这种新的酰脲衍生物通过靶向 TMV CP 并抑制 TMV 自组装来发挥优异的抗病毒活性,可被视为抗病毒应用的候选药物。