MOE Key Laboratory for Nonequilibrium Synthesis and Modulation of Condensed Matter, School of Physics, Xi'an Jiaotong University, Xi'an 710049, China.
Phys Chem Chem Phys. 2022 May 4;24(17):10506-10513. doi: 10.1039/d2cp00144f.
p38α mitogen-activated protein kinase (MAPK) undergoes autophosphorylation induced by the binding of TGFβ-activated kinase 1 binding protein 1 (TAB1) in myocardial ischemia. Investigation of the conformational transformations in p38α triggered by TAB1 binding is motivated by the need to find selective p38α activation inhibitors to treat myocardial ischemia. Herein, the conformational transformations of p38α were studied all-atom accelerated molecular dynamics simulations and principal component analysis. With the binding of TAB1, the conformational changes of p38α auto-activation were characterized by the movement of the activation loop (A-loop) away from the αG helix toward the αF, αE helixes and L16-loop. In addition, a diverse intermediate state with an extensional and phosphorylated A-loop different from the transition intermediate state was explored. The conformational changes, including the A-loop alpha-structure breaking and the stronger hydrogen bond network formation, are accompanied by the extension of the A-loop and more intramolecular interactions in p38α. TAB1 correlates with other regions of p38α that are distal from the TAB1-binding site, including the A-loop, αC helix, and L16-loop, which regulates the intramolecular correlation of p38α. And, the phosphorylation further enhances the correlations between the A-loop and the other regions of p38α. The correlation results imply the regulation process of p38α conformational transformations. These findings will improve our understanding of the autophosphorylation of kinase and facilitate the development of selective inhibitors for the treatment of ischemic injury.
p38α 丝裂原活化蛋白激酶 (MAPK) 在心肌缺血时通过 TGFβ 激活激酶 1 结合蛋白 1 (TAB1) 的结合发生自身磷酸化。研究 TAB1 结合引发的 p38α 构象转变是为了寻找选择性 p38α 激活抑制剂来治疗心肌缺血。在此,通过全原子加速分子动力学模拟和主成分分析研究了 p38α 的构象转变。随着 TAB1 的结合,p38α 自身激活的构象变化的特征是激活环 (A 环) 从αG 螺旋向αF、αE 螺旋和 L16 环移动。此外,还探索了一种具有伸展性和磷酸化 A 环的不同中间状态,与过渡中间状态不同。构象变化包括 A 环的α-结构断裂和更强的氢键网络形成,伴随着 A 环的伸展和 p38α 内更多的分子间相互作用。TAB1 与 p38α 的其他远离 TAB1 结合位点的区域相关,包括 A 环、αC 螺旋和 L16 环,这些区域调节 p38α 的分子内相关性。并且,磷酸化进一步增强了 A 环与 p38α 的其他区域之间的相关性。相关性结果暗示了 p38α 构象转变的调节过程。这些发现将提高我们对激酶自身磷酸化的理解,并有助于开发用于治疗缺血性损伤的选择性抑制剂。