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Assessment of Drug Binding Potential of Pockets in the NS2B/NS3 Dengue Virus Protein

机译:评估NS2B / NS3登革热病毒蛋白袋中袋的药物结合潜力

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Every year an endemic dengue fever estimated to affect over 390 million cases in over 128 countries occurs. However, the antigen types which stimulate the human immune response are variable, as a result, neither effective vaccines nor antiviral treatments have been successfully developed for this disease. TheNS2B/NS3 protease of the dengue virus (DENV) responsible for viral replication is a potential drug target. The ligand-enzyme binding site determination is a key role in the success of virtual screening of new inhibitors. The NS2B/NS3 protease of DENY (PDB ID: 2FOM) has two pockets consisting of 37 (Pocket 1) and 27 (Pocket 2) amino acid residues in each pocket. In this research, we characterized the amino acid residues for binding sites in NS3/NS2B based on the hydrophobicity, the percentage of charged residues, volume, depth, AGbinding, hydrogen bonding and bond length. The hydrophobic percentages of both pockets are high, 59 % (Pocket 1) and 41% (Pocket 2) and the percentage of charged residues in Pocket 1 and 2 are 22% and 48%, and the pocket volume is less than 700 A~3. An interaction analysis using molecular docking showed that interaction between the ligand complex and protein in Pocket 1 is more negative than Pocket 2. As a result, Pocket 1 is the better potential target for a ligand to inhibit the action of NS2B/NS3 DENV.
机译:每年估计有超过128个国家的390万个案件的地方登革热都发生了。然而,刺激人类免疫反应的抗原类型是可变的,结果既不是有效的疫苗,也没有成功地为该疾病开发抗病毒处理。调节病毒(DENV)的THENS2B / NS3蛋白酶负责病毒复制是潜在的药物靶标。配体 - 酶结合位点测定是在虚拟筛查新抑制剂的成功中的关键作用。拒绝(PDB ID:2FOM)的NS2B / NS3蛋白酶有两个口袋,包括每个口袋中的37(口袋1)和27(口袋2)氨基酸残基。在该研究中,我们基于疏水性,带电残余物,体积,深度,Agbinding,氢键和键合长度的疏水性,表征NS3 / NS2B中的结合位点的氨基酸残基。两个口袋的疏水百分比高,59%(口袋1)和41%(口袋2),口袋1和2中的带电残余物的百分比为22%和48%,口袋体积小于700 a〜 3。使用分子对接的相互作用分析表明,袋1中的配体复合物和蛋白质之间的相互作用比口袋2更负。结果,袋1是抑制NS2B / NS3 DenV作用的更好的潜在靶标。

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