de Lima Menezes Gabriela, Vogel Saivish Marielena, Lacerda Nogueira Maurício, Alves da Silva Roosevelt
Núcleo Colaborativo de BioSistemas, Universidade Federal de Jataí, Jataí, GO, Brazil.
Laboratório de Pesquisas em Virologia, Departamento de Doenças Dermatológicas, Infecciosas e Parasitárias, Faculdade de Medicina de São José do Rio Preto, São José do Rio Preto, São Paulo, Brazil.
J Biomol Struct Dyn. 2023 Apr;41(7):2981-2991. doi: 10.1080/07391102.2022.2042390. Epub 2022 Feb 20.
Diseases caused by viruses of the genus are among the main diseases that affect the world and they are a serious public health problem. Three of them stand out: Dengue, Yellow fever and Zika viruses. The non-structural protein 1 (NS1), encoded by this viral genus, in its dimeric form, plays important roles in the pathogenesis and RNA replication of these viruses. Therefore, the identification of chemicals with the potential to inhibit the formation of the NS1 protein dimer of DENV, YFV and ZIKV would enable them to act as a multi-target drug. For this, we selected conformations of the NS1 protein monomer with similar β-roll domain structure among the three virus species from conformations obtained from molecular dynamics simulations performed in GROMACS in 5 replicates of 150 ns for each species. After selecting the protein structures, a virtual screening of compounds from the natural products catalog of the ZINC database was performed using AutoDock Vina. The 100 best compounds were classified according efficiency criteria. Two compounds were observed in common to the species, with energy scores ranging from -9.2 kcal/mol to -10.1 kcal/mol. The results obtained here demonstrate the high similarity of NS1 proteins in the genus and high affinity for the same compounds; thus justifying the potential of these small molecules act in multitarget therapy.Communicated by Ramaswamy H. Sarma.
该属病毒引起的疾病是影响全球的主要疾病之一,也是严重的公共卫生问题。其中三种尤为突出:登革热病毒、黄热病毒和寨卡病毒。该病毒属编码的非结构蛋白1(NS1)以其二聚体形式在这些病毒的发病机制和RNA复制中发挥重要作用。因此,鉴定具有抑制登革热病毒、黄热病毒和寨卡病毒NS1蛋白二聚体形成潜力的化学物质,可使其成为一种多靶点药物。为此,我们从在GROMACS中对每个物种进行的5次150纳秒重复分子动力学模拟得到的构象中,选择了三种病毒物种中具有相似β-折叠结构域结构的NS1蛋白单体构象。选择蛋白质结构后,使用AutoDock Vina对ZINC数据库天然产物目录中的化合物进行虚拟筛选。根据效率标准对100种最佳化合物进行分类。观察到两种化合物在这些物种中是共有的,能量得分在-9.2千卡/摩尔至-10.1千卡/摩尔之间。此处获得的结果表明该属中NS1蛋白具有高度相似性,且对相同化合物具有高亲和力;因此证明了这些小分子在多靶点治疗中发挥作用的潜力。由拉马斯瓦米·H·萨尔马传达。