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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >How the Stabilization of INK4 Tumor Suppressor 3D Structure Evaluated by Quantum Chemical and Molecular Mechanics Calculations Corresponds Well with Experimental Results:Interplay of Association Enthalpy,Entropy,and Solvation Effects
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How the Stabilization of INK4 Tumor Suppressor 3D Structure Evaluated by Quantum Chemical and Molecular Mechanics Calculations Corresponds Well with Experimental Results:Interplay of Association Enthalpy,Entropy,and Solvation Effects

机译:量子化学和分子力学计算评估INK4肿瘤抑制因子3D结构的稳定性如何与实验结果很好地吻合:缔合焓,熵和溶剂化作用的相互作用

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摘要

The folding free energy of the INK4c tumor suppressor core,consisting of 10 helices,was determined as the sum of gas-phase interaction enthalpy,gas-phase interaction entropy,and dehydration and hydration free energy.The interaction energy and the hydration free energy were determined using the nonempirical density functional theory (DFT) method,augmented by a dispersion-energy correction term,the semiempirical density-functional tight-binding method covering the dispersion energy,and the density functional theory/conductor-like screening model (DFT/COSMO) procedure,whereas the interaction entropy was calculated with the empirical Cornell et al.force field.Alternatively,all contributions were evaluated consistently using empirical methods.All the values of the interaction energy of helix pairs are stabilizing,and the dominant stabilizing terms stem from the London dispersion energy and,in the case of charged systems,the electrostatic energy.The stabilization energy of the core,determined as the difference of the energy of the core and 10 separate helices,amounts to approx 450 kcal/mol.Systematically,the difference in the hydration free energy of a helix pair and its separate components is smaller in magnitude than the interaction energy,and it is negative for some pairs while positive for others.The average total free energy of a core formation amounts to -29.6 kcal/mol (yielded by scaled quantum-chemical methods) and +13.9 kcal/mol (resulting from empirical methods).These values are considerably smaller than their single components,which are dominated by the interaction energy.The computationally predicted interval encloses the experimental value of the folding free energy (-2.8 kcal/mol).
机译:将INK4c抑癌药心的折叠自由能(由10个螺旋组成)确定为气相相互作用焓,气相相互作用熵以及脱水和水合自由能之和。相互作用能和水合自由能分别为使用非经验密度泛函理论(DFT)方法确定,以色散能量校正项为基础,涵盖色散能量的半经验密度泛函紧密结合方法,以及密度泛函理论/类导体筛选模型(DFT / COSMO) )程序,而相互作用的熵是根据经验康奈尔等人的力场计算的。或者,所有的贡献都使用经验方法进行了一致的评估。螺旋对的相互作用能的所有值都是稳定的,并且主要的稳定项源自伦敦的分散能,对于带电系统,则为静电能。磁芯的稳定能确定d为核心和10个独立螺旋的能量之差,总计约450 kcal / mol。系统地,一对螺旋及其独立组分的水合自由能的差异在大小上小于相互作用能,并且它对某些对是负的,而对另一些对是正的。核心形成的平均总自由能为-29.6 kcal / mol(通过缩放量子化学方法获得)和+13.9 kcal / mol(根据经验方法得出)。计算值的间隔大大小于折叠自由能的实验值(-2.8 kcal / mol)。

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