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环肽抑制剂阻断CK2α/CK2β相互作用的潜在机制:比较分子动力学模拟研究

Underlying mechanisms of cyclic peptide inhibitors interrupting the interaction of CK2α/CK2β: comparative molecular dynamics simulation studies.

作者信息

Zhou Yue, Zhang Na, Chen Wenjuan, Zhao Lijiao, Zhong Rugang

机构信息

College of Life Science and Bioengineering, Beijing University of Technology, Beijing 100124, China.

出版信息

Phys Chem Chem Phys. 2016 Apr 7;18(13):9202-10. doi: 10.1039/c5cp06276d.

Abstract

Protein-protein interactions (PPIs) are fundamental to all biological processes. Recently, the CK2β-derived cyclic peptide Pc has been demonstrated to efficiently antagonize the CK2α/CK2β interaction and strongly affect the phosphorylation of CK2β-dependent CK2 substrate specificity. The binding affinity of Pc to CK2α is destroyed to different extents by two single-point mutations of Tyr188 to Ala (Y188A) and Phe190 to Ala (F190A), which exert negative effects on the inhibitory activity (IC50) of Pc against the CK2α/CK2β interaction from 3.0 μM to 54.0 μM and ≫100 μM, respectively. However, the structural influences of Y188A and F190A mutations on the CK2α-Pc complex remain unclear. In this study, comparative molecular dynamics (MD) simulations, principal component analysis (PCA), domain cross-correlation map (DCCM) analysis and energy calculations were performed on wild type (WT), Y188A mutant, and F190A mutant systems. The results revealed that ordered communications between hydrophobic and polar interactions were essential for CK2α-Pc binding in the WT system. In addition to the loss of the hydrogen bond between Gln36 of CK2α and Gly189 of Pc in the two mutants, the improper recognition mechanisms occurred through different pathways. These pathways included the weakened hydrophobic interactions in the Y188A mutant as well as decreased polar and hydrophobic interactions in the F190A mutant. The energy analysis results qualitatively elucidated the instability of the two mutants and energetic contributions of the key residues. This study not only revealed the structural mechanisms for the decreased binding affinity of Y188A and F190A mutant CK2α-Pc complexes, but also provided valuable clues for the rational design of CK2α/CK2β subunit interaction inhibitors with high affinity and specificity.

摘要

蛋白质-蛋白质相互作用(PPIs)是所有生物过程的基础。最近,已证明源自CK2β的环肽Pc能有效拮抗CK2α/CK2β相互作用,并强烈影响CK2β依赖性CK2底物特异性的磷酸化。Pc与CK2α的结合亲和力因Tyr188突变为Ala(Y188A)和Phe190突变为Ala(F190A)这两个单点突变而受到不同程度的破坏,这分别对Pc针对CK2α/CK2β相互作用的抑制活性(IC50)产生负面影响,使其从3.0 μM增加到54.0 μM以及≫100 μM。然而,Y188A和F190A突变对CK2α-Pc复合物的结构影响仍不清楚。在本研究中,对野生型(WT)、Y188A突变体和F190A突变体系统进行了比较分子动力学(MD)模拟、主成分分析(PCA)、结构域互相关图(DCCM)分析和能量计算。结果表明,疏水相互作用和极性相互作用之间的有序通讯对于WT系统中CK2α-Pc的结合至关重要。除了两个突变体中CK2α的Gln36与Pc的Gly189之间的氢键丧失外,还通过不同途径出现了不适当的识别机制。这些途径包括Y188A突变体中疏水相互作用减弱以及F190A突变体中极性和疏水相互作用降低。能量分析结果定性地阐明了两个突变体的不稳定性以及关键残基的能量贡献。本研究不仅揭示了Y188A和F190A突变体CK2α-Pc复合物结合亲和力降低的结构机制,还为合理设计具有高亲和力和特异性的CK2α/CK2β亚基相互作用抑制剂提供了有价值的线索。

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