Hu Xin, Legler Patricia M, Southall Noel, Maloney David J, Simeonov Anton, Jadhav Ajit
NIH Chemical Genomics Center, National Center for Advancing Translational Sciences, National Institutes of Health, 9800 Medical Center Drive, Rockville, MD, 20850, USA,
J Comput Aided Mol Des. 2014 Jul;28(7):765-78. doi: 10.1007/s10822-014-9758-7. Epub 2014 Jun 24.
Botulinum neurotoxin serotype A (BoNT/A) is the most lethal toxin among the Tier 1 Select Agents. Development of potent and selective small molecule inhibitors against BoNT/A zinc metalloprotease remains a challenging problem due to its exceptionally large substrate binding surface and conformational plasticity. The exosites of the catalytic domain of BoNT/A are intriguing alternative sites for small molecule intervention, but their suitability for inhibitor design remains largely unexplored. In this study, we employed two recently identified exosite inhibitors, D-chicoric acid and lomofungin, to probe the structural features of the exosites and molecular mechanisms of synergistic inhibition. The results showed that D-chicoric acid favors binding at the α-exosite, whereas lomofungin preferentially binds at the β-exosite by mimicking the substrate β-sheet binding interaction. Molecular dynamics simulations and binding interaction analysis of the exosite inhibitors with BoNT/A revealed key elements and hotspots that likely contribute to the inhibitor binding and synergistic inhibition. Finally, we performed database virtual screening for novel inhibitors of BoNT/A targeting the exosites. Hits C1 and C2 showed non-competitive inhibition and likely target the α- and β-exosites, respectively. The identified exosite inhibitors may provide novel candidates for structure-based development of therapeutics against BoNT/A intoxication.
A型肉毒杆菌神经毒素(BoNT/A)是一级选择生物制剂中最致命的毒素。由于BoNT/A锌金属蛋白酶具有异常大的底物结合表面和构象可塑性,开发针对其的强效且选择性的小分子抑制剂仍然是一个具有挑战性的问题。BoNT/A催化结构域的外部位点是小分子干预的有趣替代位点,但其在抑制剂设计方面的适用性在很大程度上仍未得到探索。在本研究中,我们使用了两种最近鉴定出的外部位点抑制剂,D-菊苣酸和洛莫真菌素,来探究外部位点的结构特征和协同抑制的分子机制。结果表明,D-菊苣酸倾向于结合在α外部位点,而洛莫真菌素通过模拟底物β折叠结合相互作用优先结合在β外部位点。外部位点抑制剂与BoNT/A的分子动力学模拟和结合相互作用分析揭示了可能有助于抑制剂结合和协同抑制的关键元件和热点。最后,我们针对靶向外部位点的BoNT/A新型抑制剂进行了数据库虚拟筛选。命中化合物C1和C2显示出非竞争性抑制,可能分别靶向α和β外部位点。所鉴定的外部位点抑制剂可能为基于结构的抗BoNT/A中毒治疗药物开发提供新的候选物。