Laboratory of Molecular Modeling and Dynamics , Biophysics Institute Carlos Chagas Filho, Federal University of Rio de Janeiro, Rio de Janeiro, Brazil.
J Biomol Struct Dyn. 2013;31(5):477-84. doi: 10.1080/07391102.2012.703072. Epub 2012 Aug 13.
Yersinia pestis protein Pla is a plasmid-coded outer membrane protein with aspartic-protease activity. Pla exhibits a plasminogen (Plg) activator activity (PAA) that promotes the cleavage of Plg to the active serine-protease form called plasmin. Exactly how Pla activates Plg into plasmin remains unclear. To investigate this event, we performed the interactions between the predicted Plg and Pla protein structures by rigid-body docking with the HEX program and evaluated the complex stability by molecular dynamics (MD) using the GROMACS package programs. The predicted docked complex of Plg-Pla shows the same interaction site predicted by experimental site-direct mutagenesis in other studies. After a total of 8 ns of MD simulation, we observed the relaxation of the beta-barrel structure of Pla and the progressive approximation and stabilization between the cleavage site of Plg into the extracellular loops of Pla, followed by the increase in the number of H bonds. We also report here the aminoacids that participate in the active site and the sub sites of interaction. The total understanding of these interactions can be an important tool for drug design against bacterial proteases.
鼠疫耶尔森氏菌蛋白 Pla 是一种质膜编码的外膜蛋白,具有天冬氨酸蛋白酶活性。Pla 表现出纤溶酶原(Plg)激活活性(PAA),可促进 Plg 切割为称为纤溶酶的活性丝氨酸蛋白酶形式。Pla 将 Plg 激活为纤溶酶的确切机制尚不清楚。为了研究这一事件,我们使用 HEX 程序通过刚体对接进行了预测的 Plg 和 Pla 蛋白结构之间的相互作用,并使用 GROMACS 程序包的分子动力学(MD)评估了复合物的稳定性。预测的 Plg-Pla 对接复合物显示出与其他研究中通过实验定点突变预测的相同相互作用位点。经过总共 8 ns 的 MD 模拟,我们观察到 Pla 的β-桶结构的弛豫以及 Plg 的裂解位点逐渐接近和稳定在 Pla 的细胞外环中,随后氢键数量增加。我们还报告了参与活性位点和相互作用亚位点的氨基酸。对这些相互作用的全面了解可能是针对细菌蛋白酶的药物设计的重要工具。