Graduate Program in Computational Science and Engineering, Bogazici University, Bebek, Istanbul 34342, Turkey.
Proteins. 2013 May;81(5):788-804. doi: 10.1002/prot.24234. Epub 2013 Jan 15.
In protein tyrosine phosphatase 1B (PTP1B), the flexible WPD loop adopts a closed conformation (WPDclosed ) in the active state of PTP1B, bringing the catalytic Asp181 close to the active site pocket, while WPD loop is in an open conformation (WPDopen ) in the inactive state. Previous studies showed that Asp181 may be protonated at physiological pH, and ordered water molecules exist in the active site. In the current study, molecular dynamics simulations are employed at different Asp181 protonation states and initial positions of active site water molecules, and compared with the existing crystallographic data of PTP1B. In WPDclosed conformation, the active site is found to maintain its conformation only in the protonated state of Asp181 in both free and liganded states, while Asp181 is likely to be deprotonated in WPDopen conformation. When the active site water molecule network that is a part of the free WPDclosed crystal structure is disrupted, intermediate WPD loop conformations, similar to that in the PTPRR crystal structure, are sampled in the MD simulations. In liganded PTP1B, one active site water molecule is found to be important for facilitating the orientation of Cys215 and the phosphate ion, thus may play a role in the reaction. In conclusion, conformational stability of WPD loop, and possibly catalytic activity of PTP1B, is significantly affected by the protonation state of Asp181 and position of active site water molecules, showing that these aspects should be taken into consideration both in MD simulations and inhibitor design.
在蛋白酪氨酸磷酸酶 1B(PTP1B)中,柔性 WPD 环在 PTP1B 的活性状态下采取封闭构象(WPDclosed),使催化性天冬氨酸 181 靠近活性位点口袋,而在非活性状态下,WPD 环采取开放构象(WPDopen)。先前的研究表明,生理 pH 条件下天冬氨酸 181 可能被质子化,且活性位点存在有序水分子。在当前研究中,我们在不同的天冬氨酸 181 质子化状态和活性位点水分子的初始位置下进行分子动力学模拟,并与现有的 PTP1B 晶体学数据进行比较。在 WPDclosed 构象中,我们发现,在自由态和配体结合态下,只有在天冬氨酸 181 质子化状态下,活性位点才能保持其构象,而在 WPDopen 构象中天冬氨酸 181 很可能去质子化。当作为自由 WPDclosed 晶体结构一部分的活性位点水分子网络被破坏时,在 MD 模拟中可以采样到类似于 PTPRR 晶体结构的中间 WPD 环构象。在配体结合的 PTP1B 中,发现一个活性位点水分子对于促进 Cys215 和磷酸离子的取向很重要,因此可能在反应中发挥作用。总之,WPD 环的构象稳定性,以及 PTP1B 的催化活性,受到天冬氨酸 181 的质子化状态和活性位点水分子位置的显著影响,这表明在 MD 模拟和抑制剂设计中都应考虑这些方面。