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首页> 外文期刊>Journal of Biomolecular Structure and Dynamics >Decoding molecular mechanism of inhibitor bindings to CDK2 using molecular dynamics simulations and binding free energy calculations
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Decoding molecular mechanism of inhibitor bindings to CDK2 using molecular dynamics simulations and binding free energy calculations

机译:用分子动力学模拟解码抑制剂结合与CDK2的分子机制,并结合自由能计算

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摘要

CDK2 can be used as an attractive target for development of efficient inhibitors curing multiple disease relating with CDK2. In this work, molecular dynamics (MD) simulations and binding free energy calculations were coupled to probe conformational changes of CDK2 due to inhibitor associations and binding mechanisms of inhibitors PM1, FMD and X64 to CDK2. The results suggest that the binding strength of FMD and X64 to CDK2 is stronger than that of PM1. Principal component (PC) analysis and cross-correlation map calculations based on the equilibrated MD trajectories demonstrate that the structural difference in inhibitors exerts important impact on motion modes and dynamics behavior of CDK2. Residue-based free energy decomposition method was adopted to estimate the inhibitor-residue spectrum. The results not only efficiently identify the hot interaction spot of inhibitors with CDK2 but also show that the hydrophobic rings R1, R2 and R3 as well as polar groups of three inhibitors play key roles in favorably binding of inhibitors to CDK2. This work is expected to contribute energetic basis and dynamics information to development of promising inhibitors toward CDK2.
机译:CDK2可用作发育与CDK2相关的多种疾病的有效抑制剂的有吸引力的靶向。在该工作中,由于抑制剂PM1,FMD和X64至CDK2,分子动力学(MD)模拟和结合自由能量计算CDK2的探针构象变化和CDK2的结合机制。结果表明,FMD和X64至CDK2的结合强度比PM1更强。基于平衡的MD轨迹的主成分(PC)分析和互相关地图计算表明,抑制剂的结构差对CDK2的运动模式和动力学行为产生了重要影响。采用基于残留的游离能量分解方法来估计抑制剂残留谱。结果不仅有效地鉴定了CDK2的抑制剂的热相互作用点,而且还表明,疏水环R1,R2和R3以及三种抑制剂的极性基团在有利地将抑制剂与CDK2结合起来的关键作用。预计这项工作有助于为CDK2开发有前途的抑制剂的能量基础和动力学信息。

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