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本文引用的文献

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Does conformational free energy distinguish loop conformations in proteins?构象自由能能否区分蛋白质中的环构象?
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Empirical free energy calculation: comparison to calorimetric data.经验自由能计算:与量热数据的比较。
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Empirical potentials and functions for protein folding and binding.蛋白质折叠与结合的经验势和函数
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Extracting hydrophobicity parameters from solute partition and protein mutation/unfolding experiments.从溶质分配以及蛋白质突变/去折叠实验中提取疏水性参数。
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Folding proteins with a simple energy function and extensive conformational searching.利用简单能量函数和广泛构象搜索来折叠蛋白质。
Protein Sci. 1996 Feb;5(2):254-61. doi: 10.1002/pro.5560050209.
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Structure-derived potentials and protein simulations.基于结构的电位与蛋白质模拟
Curr Opin Struct Biol. 1996 Apr;6(2):195-209. doi: 10.1016/s0959-440x(96)80075-3.
8
A critical assessment of comparative molecular modeling of tertiary structures of proteins.蛋白质三级结构比较分子建模的批判性评估。
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9
Using a hydrophobic contact potential to evaluate native and near-native folds generated by molecular dynamics simulations.利用疏水接触势评估分子动力学模拟产生的天然和近天然折叠。
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10
Energy functions that discriminate X-ray and near native folds from well-constructed decoys.能够区分X射线结构和接近天然折叠结构与精心构建的诱饵结构的能量函数。
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在同源建模中选择接近天然的构象:分子力学和溶剂化项的作用。

Selecting near-native conformations in homology modeling: the role of molecular mechanics and solvation terms.

作者信息

Janardhan A, Vajda S

机构信息

Department of Biomedical Engineering, Boston University, Massachusetts 02215, USA.

出版信息

Protein Sci. 1998 Aug;7(8):1772-80. doi: 10.1002/pro.5560070812.

DOI:10.1002/pro.5560070812
PMID:10082374
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2144075/
Abstract

A free energy function, combining molecular mechanics energy with empirical solvation and entropic terms, is used for ranking near-native conformations that occur in the conformational search steps of homology modeling, i.e., side-chain search and loop closure calculations. Correlations between the free energy and RMS deviation from the X-ray structure are established. It is shown that generally both molecular mechanics and solvation/entropic terms should be included in the potential. The identification of near-native backbone conformations is accomplished primarily by the molecular mechanics term that becomes the dominant contribution to the free energy if the backbone is even slightly strained, as frequently occurs in loop closure calculations. Both terms become equally important if a sufficiently accurate backbone conformation is found. Finally, the selection of the best side-chain positions for a fixed backbone is almost completely governed by the solvation term. The discriminatory power of the combined potential is demonstrated by evaluating the free energies of protein models submitted to the first meeting on Critical Assessment of techniques for protein Structure Prediction (CASP1), and comparing them to the free energies of the native conformations.

摘要

一种将分子力学能量与经验溶剂化和熵项相结合的自由能函数,用于对同源建模构象搜索步骤中出现的近天然构象进行排序,即侧链搜索和环闭合计算。建立了自由能与相对于X射线结构的均方根偏差之间的相关性。结果表明,通常在势能中应同时包含分子力学和溶剂化/熵项。近天然主链构象的识别主要通过分子力学项来完成,如果主链即使稍有应变,分子力学项就会成为自由能的主要贡献,这在环闭合计算中经常发生。如果找到足够准确的主链构象,这两个项就会变得同样重要。最后,对于固定的主链,最佳侧链位置的选择几乎完全由溶剂化项决定。通过评估提交给第一届蛋白质结构预测技术关键评估会议(CASP1)的蛋白质模型的自由能,并将它们与天然构象的自由能进行比较,证明了组合势能的判别能力。