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Exploring the binding of peptidic West Nile virus NS2B-NS3 protease inhibitors by NMR

机译:通过NMR探索肽类西尼罗河病毒NS2B-NS3蛋白酶抑制剂的结合

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West Nile virus (WNV) NS2B-NS3 protease is an important drug target since it is an essential protein for the replication of the virus. In order to determine the minimum pharmacophore for protease inhibition, a series of dipeptide aldehydes were synthesized. The 50% inhibitory concentration (IC50) measurements revealed that a simple acetyl-KR-aldehyde was only threefold less active than 4-phenyl-phenylacetyl-KKR-aldehyde (1) (Stoermer et al., 2008) that was used as the reference compound. The ligand efficiency of 0.40kcal/mol/HA (HA=heavy atom) for acetyl-KR-aldehyde is much improved compared to the reference compound 1 (0.23kcal/mol/HA). The binding of the inhibitors was examined using 1H-15N-HSQC experiments and differential chemical shifts were used to map the ligand binding sites. The biophysical studies show that the conformational mobility of WNV protease has a major impact on the design of novel inhibitors, since the protein conformation changes profoundly depending on the structure of the bound ligand. ? 2012 Elsevier B.V.
机译:西尼罗河病毒(WNV)NS2B-NS3蛋白酶是重要的药物靶标,因为它是病毒复制的必需蛋白。为了确定抑制蛋白酶的最小药效基团,合成了一系列的二肽醛。 50%抑制浓度(IC50)的测量结果表明,简单的乙酰基KR-醛的活性仅比用作参考的4-苯基-苯基乙酰基-KKR-醛(1)低三倍(Stoermer et al。,2008)。复合。与参考化合物1(0.23kcal / mol / HA)相比,乙酰基-KR-醛的配体效率为0.40kcal / mol / HA(HA =重原子)。使用1H-15N-HSQC实验检查了抑制剂的结合,并使用不同的化学位移绘制了配体结合位点。生物物理研究表明,WNV蛋白酶的构象迁移率对新型抑制剂的设计有重大影响,因为蛋白质构象会根据结合的配体的结构发生深刻变化。 ? 2012年Elsevier B.V.

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