Department of Biosciences and Biomedical Engineering (BSBE), Indian Institute of Technology Indore (IITI), Simrol, Indore, 453552, India.
Laboratory for Structural Bioinformatics, Center for Biosystems Dynamics Research, RIKEN, 1-7-22 Suehiro, Tsurumi, Yokohama, Kanagawa, 230-0045, Japan.
Sci Rep. 2022 Apr 4;12(1):5601. doi: 10.1038/s41598-022-09528-8.
The role of TIRAP (toll/interleukin-1 receptor (TIR) domain-containing adapter protein) in macrophage inflammatory signalling has been significantly evolved since its discovery in 2001 due to its dynamic nature and subcellular localization to regulate multiple signaling through several protein-protein interactions (PPIs). Structural analysis of these interactions can reveal a better understanding of their conformational dynamics and the nature of their binding. Tyrosine phosphorylation in the TIR domain of TIRAP is very critical for its function. In toll-like receptor (TLR) 4/2 signalling, Bruton's tyrosine kinase (BTK) and Protein kinase C delta (PKCδ) are known to phosphorylate the Y86, Y106, Y159, and Y187 of TIRAP which is crucial for the downstream function of MAPKs (mitogen-activated protein kinases) activation. The objective of this study is to understand the interaction of TIRAP with p38 MAPK through molecular docking and identify the importance of TIRAP tyrosine phosphorylation in p38 MAPK interaction. In this structural study, we performed an in-silico molecular docking using HADDOCK 2.4, pyDockWEB, ClusPro 2.0, and ZDOCK 3.0.2 tools to unravel the interaction between TIRAP and p38 MAPK. Further, manual in-silico phosphorylations of TIRAP tyrosines; Y86, Y106, Y159, and Y187 was created in the Discovery Studio tool to study the conformational changes in protein docking and their binding affinities with p38 MAPK in comparison to non-phosphorylated state. Our molecular docking and 500 ns of molecular dynamic (MD) simulation study demonstrates that the Y86 phosphorylation (pY86) in TIRAP is crucial in promoting the higher binding affinity (∆G) with p38 MAPK. The conformational changes due to the tyrosine phosphorylation mainly at the Y86 site pull the TIRAP closer to the active site in the kinase domain of p38 MAPK and plays a significant role at the interface site which is reversed in its dephosphorylated state. The heatmap of interactions between the TIRAP and p38 MAPK after the MD simulation shows that the TIRAP pY86 structure makes the highest number of stable hydrogen bonds with p38 MAPK residues. Our findings may further be validated in an in-vitro system and would be crucial for targeting the TIRAP and p38 MAPK interaction for therapeutic purposes against the chronic inflammatory response and associated diseases.
TIRAP( toll/interleukin-1 receptor (TIR) 域包含衔接蛋白)在巨噬细胞炎症信号中的作用自 2001 年发现以来发生了显著变化,这是由于其动态性质和亚细胞定位,通过几种蛋白-蛋白相互作用(PPIs)来调节多种信号。这些相互作用的结构分析可以更好地了解它们的构象动力学和结合的本质。TIRAP 的 TIR 结构域中的酪氨酸磷酸化对其功能至关重要。在 Toll 样受体(TLR)4/2 信号转导中,已知 Bruton 酪氨酸激酶(BTK)和蛋白激酶 C 三角洲(PKCδ)磷酸化 TIRAP 的 Y86、Y106、Y159 和 Y187,这对于 MAPK(有丝分裂原激活的蛋白激酶)激活的下游功能至关重要。本研究的目的是通过分子对接了解 TIRAP 与 p38 MAPK 的相互作用,并确定 TIRAP 酪氨酸磷酸化在 p38 MAPK 相互作用中的重要性。在这项结构研究中,我们使用 HADDOCK 2.4、pyDockWEB、ClusPro 2.0 和 ZDOCK 3.0.2 工具进行了分子对接,以揭示 TIRAP 与 p38 MAPK 之间的相互作用。此外,我们在 Discovery Studio 工具中对 TIRAP 的酪氨酸残基 Y86、Y106、Y159 和 Y187 进行了手动模拟磷酸化,以研究与非磷酸化状态相比,蛋白质对接中的构象变化及其与 p38 MAPK 的结合亲和力。我们的分子对接和 500ns 的分子动力学(MD)模拟研究表明,TIRAP 中的 Y86 磷酸化(pY86)对于促进与 p38 MAPK 更高的结合亲和力(∆G)至关重要。由于酪氨酸磷酸化主要在 Y86 位点引起的构象变化将 TIRAP 拉向 p38 MAPK 激酶结构域的活性位点,并在去磷酸化状态下在界面位点发挥重要作用。MD 模拟后 TIRAP 和 p38 MAPK 之间相互作用的热图表明,TIRAP pY86 结构与 p38 MAPK 残基形成了最高数量的稳定氢键。我们的发现可以在体外系统中进一步验证,并将对靶向 TIRAP 和 p38 MAPK 相互作用以治疗慢性炎症反应和相关疾病具有重要意义。