Center for R&D of Fine Chemicals of Guizhou University, Key Laboratory of Green Pesticide and Agricultural Bioengineering, Ministry of Education, National Key Laboratory of Green Pesticide, Guiyang 550025, China.
Int J Mol Sci. 2023 May 5;24(9):8280. doi: 10.3390/ijms24098280.
In this study, a commercial agent with antivirus activity and moroxydine hydrochloride were employed to perform a lead optimization. A series of 1,3,5-triazine derivatives with piperazine structures were devised and synthesized, and an evaluation of their anti-potato virus Y (PVY) activity revealed that several of the target compounds possessed potent anti-PVY activity. The synthesis of compound was directed by a 3D-quantitative structure-activity relationship that used the compound's structural parameters. The assessment of the anti-PVY activity of compound revealed that its curative, protective, and inactivation activities (53.3 ± 2.5%, 56.9 ± 1.5%, and 85.8 ± 4.4%, respectively) were comparable to the positive control of ningnanmycin (49.1 ± 2.4%, 50.7 ± 4.1%, and 82.3 ± 6.4%) and were superior to moroxydine hydrochloride (36.7 ± 2.7%, 31.4 ± 2.0%, and 57.1 ± 1.8%). In addition, molecular docking demonstrated that can form hydrogen bonds with glutamic acid at position 150 (GLU 150) of PVY CP, providing a partial theoretical basis for the antiviral activity of the target compounds.
在这项研究中,采用具有抗病毒活性的商业试剂和盐酸吗啉胍进行了先导优化。设计并合成了一系列具有哌嗪结构的 1,3,5-三嗪衍生物,并对其抗马铃薯 Y 病毒(PVY)活性进行了评价,结果表明,部分目标化合物具有较强的抗 PVY 活性。化合物 的合成是通过使用化合物结构参数的三维定量构效关系指导的。对化合物 的抗 PVY 活性评估表明,其治疗、保护和失活活性(分别为 53.3±2.5%、56.9±1.5%和 85.8±4.4%)与宁南霉素(49.1±2.4%、50.7±4.1%和 82.3±6.4%)的阳性对照相当,优于盐酸吗啉胍(36.7±2.7%、31.4±2.0%和 57.1±1.8%)。此外,分子对接表明,化合物 可以与 PVY CP 中位置 150 的谷氨酸(GLU 150)形成氢键,为目标化合物的抗病毒活性提供了部分理论依据。