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A Comparative Linear Interaction Energy and MM/PBSAStudy on SIRT1–Ligand Binding Free Energy Calculation

机译:比较线性相互作用能和MM / PBSASIRT1–配体结合自由能计算研究

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摘要

Binding free energy (ΔGbind) computation can play an important role in prioritizing compounds to be evaluated experimentally on their affinity for target proteins, yet fast and accurate ΔGbind calculation remains an elusive task. In this study, we compare the performance of two popular end-point methods, i.e., linear interaction energy (LIE) and molecular mechanics/Poisson–Boltzmann surface area (MM/PBSA), with respect to their ability to correlate calculated binding affinities of 27 thieno[3,2-d]pyrimidine-6-carboxamide-derived sirtuin 1 (SIRT1) inhibitors with experimental data. Compared with the standard single-trajectory setup of MM/PBSA, our study elucidates that LIE allows to obtain direct (“absolute”) values for SIRT1 binding free energies with lower compute requirements, while the accuracy in calculating relative values for ΔGbind is comparable (Pearson’s r = 0.72 and 0.64 for LIE and MM/PBSA, respectively). We also investigate the potential of combining multiple docking poses in iterative LIE models and find that Boltzmann-like weighting of outcomes of simulations starting from different poses can retrieve appropriate binding orientations. In addition, we find that in thisparticular case study the LIE and MM/PBSA models can be optimizedby neglecting the contributions from electrostatic and polar interactionsto the ΔGbind calculations.
机译:结合自由能(ΔGbind)计算在确定化合物对靶蛋白亲和力的优先次序方面可以发挥重要作用,但是快速准确的ΔGbind计算仍然是一项艰巨的任务。在这项研究中,我们比较了两种流行的终点方法的性能,即线性相互作用能(LIE)和分子力学/泊松-玻尔兹曼表面积(MM / PBSA),它们具有相关的结合亲和力的计算能力。 27种噻吩并[3,2-d]嘧啶-6-羧酰胺衍生的sirtuin 1(SIRT1)抑制剂,具有实验数据。与MM / PBSA的标准单轨迹设置相比,我们的研究阐明LIE允许以较低的计算要求来获取SIRT1结合自由能的直接(“绝对”)值,而ΔGbind的相对值的计算精度可比(对于LIE和MM / PBSA,Pearson的r分别为0.72和0.64)。我们还研究了在迭代LIE模型中组合多个对接姿势的潜力,并发现从不同姿势开始的模拟结果的玻尔兹曼式加权可以检索适当的绑定方向。另外,我们发现特殊案例研究可以优化LIE和MM / PBSA模型通过忽略静电和极性相互作用的贡献ΔGbind计算。

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