Rendine Stefano, Orrenius Christian, Dapiaggi Federico, Pieraccini Stefano, Motto Ilaria, D'Alessio Roberto, Magnaghi Paola, Isacchi Antonella, Felder Eduard, Sironi Maurizio
Acta Chim Slov. 2019 Jun;66(2):395-401.
Binary (nucleotide-protein dimer and hexamer complexes) and ternary (nucleotide-protein-inhibitor complexes) p97 complexes were subjected to molecular dynamics simulations in an attempt to further our understanding of the p97 protein oligomer domain stability and, more importantly, of the recently reported diverse molecular mechanisms of inhibition including allosteric, ATP-competitive and covalent inhibitors. Analysis of stable states following equilibration phases indicated a higher intrinsic stability of the homohexamer as opposed to the dimer, and of N-D1 domains as opposed to the D2 domain. The molecular dynamics of the proposed allosteric binding model reproduced important molecular interactions identified experimentally with high frequency throughout the trajectory. Observed conformational changes occurring in the D2 nucleotide binding site provided a novel bind-rearrange-react hypothesis of stepwise molecular events involved in the specific covalent inhibitor mode of action.
对二元(核苷酸 - 蛋白质二聚体和六聚体复合物)和三元(核苷酸 - 蛋白质 - 抑制剂复合物)p97复合物进行分子动力学模拟,以进一步了解p97蛋白寡聚结构域的稳定性,更重要的是了解最近报道的包括变构、ATP竞争性和共价抑制剂在内的多种抑制分子机制。对平衡阶段后的稳定状态分析表明,同型六聚体相对于二聚体具有更高的固有稳定性,N - D1结构域相对于D2结构域具有更高的固有稳定性。所提出的变构结合模型的分子动力学重现了在整个轨迹中高频实验鉴定出的重要分子相互作用。在D2核苷酸结合位点观察到的构象变化为参与特定共价抑制剂作用模式的逐步分子事件提供了一种新的结合 - 重排 - 反应假说。