Frecer Vladimír, Kabelác Martin, De Nardi Piergiuseppe, Pricl Sabrina, Miertus Stanislav
International Centre for Science and High Technology, UNIDO, AREA Science Park, Padriciano 99, I-34012, Trieste, Italy.
J Mol Graph Model. 2004 Jan;22(3):209-20. doi: 10.1016/S1093-3263(03)00161-X.
We have designed small focused combinatorial library of hexapeptide inhibitors of NS3 serine protease of the hepatitis C virus (HCV) by structure-based molecular design complemented by combinatorial optimisation of the individual residues. Rational residue substitutions were guided by the structure and properties of the binding pockets of the enzyme's active site. The inhibitors were derived from peptides known to inhibit the NS3 serine protease by using unusual amino acids and alpha-ketocysteine or difluoroaminobutyric acid, which are known to bind to the S1 pocket of the catalytic site. Inhibition constants (Ki) of the designed library of inhibitors were predicted from a QSAR model that correlated experimental Ki of known peptidic inhibitors of NS3 with the enthalpies of enzyme-inhibitor interaction computed via molecular mechanics and the solvent effect contribution to the binding affinity derived from the continuum model of solvation. The library of the optimised inhibitors contains promising drug candidates-water-soluble anionic hexapeptides with predicted Ki* in the picomolar range.
我们通过基于结构的分子设计,并结合对各个残基的组合优化,设计了一个针对丙型肝炎病毒(HCV)NS3丝氨酸蛋白酶的小型聚焦六肽抑制剂组合文库。合理的残基取代是由该酶活性位点结合口袋的结构和性质引导的。这些抑制剂来源于已知可抑制NS3丝氨酸蛋白酶的肽,通过使用不寻常的氨基酸和α-酮半胱氨酸或二氟氨基丁酸,它们已知可结合到催化位点的S1口袋。从一个QSAR模型预测了设计的抑制剂文库的抑制常数(Ki),该模型将已知NS3肽类抑制剂的实验Ki与通过分子力学计算的酶-抑制剂相互作用焓以及从连续溶剂化模型得出的溶剂效应对结合亲和力的贡献相关联。优化后的抑制剂文库包含有前景的候选药物——预测Ki*在皮摩尔范围内的水溶性阴离子六肽。