Department of Chemistry and Biochemistry, University of California, San Diego, La Jolla, California, USA.
Proteins. 2010 Aug 15;78(11):2523-32. doi: 10.1002/prot.22761.
The highly pathogenic influenza strains H5N1 and H1N1 are currently treated with inhibitors of the viral surface protein neuraminidase (N1). Crystal structures of N1 indicate a conserved, high affinity calcium binding site located near the active site. The specific role of this calcium in the enzyme mechanism is unknown, though it has been shown to be important for enzymatic activity and thermostability. We report molecular dynamics (MD) simulations of calcium-bound and calcium-free N1 complexes with the inhibitor oseltamivir (marketed as the drug Tamiflu), independently using both the AMBER FF99SB and GROMOS96 force fields, to give structural insight into calcium stabilization of key framework residues. Y347, which demonstrates similar sampling patterns in the simulations of both force fields, is implicated as an important N1 residue that can "clamp" the ligand into a favorable binding pose. Free energy perturbation and thermodynamic integration calculations, using two different force fields, support the importance of Y347 and indicate a +3 to +5 kcal/mol change in the binding free energy of oseltamivir in the absence of calcium. With the important role of structure-based drug design for neuraminidase inhibitors and the growing literature on emerging strains and subtypes, inclusion of this calcium for active site stability is particularly crucial for computational efforts such as homology modeling, virtual screening, and free energy methods.
高致病性流感病毒株 H5N1 和 H1N1 目前采用神经氨酸酶(N1)病毒表面蛋白抑制剂进行治疗。N1 的晶体结构表明,在活性位点附近存在一个保守的、高亲和力的钙结合位点。虽然已经证明钙对于酶活性和热稳定性很重要,但这种钙在酶机制中的具体作用尚不清楚。我们报告了使用 AMBER FF99SB 和 GROMOS96 力场分别独立进行的钙结合和无钙 N1 复合物与抑制剂奥司他韦(以药物达菲出售)的分子动力学(MD)模拟,以深入了解钙对关键骨架残基的稳定作用。Y347 在两种力场的模拟中表现出相似的采样模式,表明它是一个重要的 N1 残基,可以将配体“夹”在有利的结合位置。使用两种不同力场的自由能扰动和热力学积分计算支持了 Y347 的重要性,并表明在没有钙的情况下,奥司他韦的结合自由能发生了+3 到+5 kcal/mol 的变化。鉴于基于结构的药物设计对神经氨酸酶抑制剂的重要性以及新兴菌株和亚型的不断增加的文献,将这种钙纳入活性位点稳定性对于同源建模、虚拟筛选和自由能方法等计算工作尤为关键。