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涉及紧密结合水分子的突变以及配体-蛋白质复合物中配体取代的自由能计算。

Free Energy Calculations of Mutations Involving a Tightly Bound Water Molecule and Ligand Substitutions in a Ligand-Protein Complex.

作者信息

García-Sosa Alfonso T, Mancera Ricardo L

机构信息

Institute of Chemistry, University of Tartu, Jakobi 2-319, Tartu 51014, Estonia tel: + 372 737 5270; fax: + 372 737 5264.

Curtin Health Innovation Research Institute, Western Australian Biomedical Research Institute, School of Biomedical Sciences and School of Pharmacy, Curtin University of Technology, GPO Box U1987, Perth WA 6865, Australia.

出版信息

Mol Inform. 2010 Sep 17;29(8-9):589-600. doi: 10.1002/minf.201000007. Epub 2010 Aug 30.

Abstract

The accurate calculation of the free energy of interaction of protein-water-ligand systems has an important role in molecular recognition and drug design that is often not fully considered. We report free energy thermodynamic integration calculations used to evaluate the effects of inclusion, neglect, and targeting and removal (i.e., systematic substitution by ligand functional groups) of an important, tightly bound, water molecule in the SH3 domain of Abl tyrosine kinase. The effects of this water molecule on the free energies of interaction of several Abl-SH3 domain-ligand systems reveal that there is an unfavourable free energy change associated with its removal into the bulk solvent. Only three substitutions by an additional functional group (out of methyl, ethyl, hydroxyl, amino, and amide groups) in the phenyl ring of a tyrosine in the peptide ligand resulted in a favourable change in the free energy of binding upon replacement of the ordered water molecule. This computational approach provides a direct route to the systematic and rigorous prediction of the thermodynamic influence of ordered, structural water molecules on ligand modification and optimization in drug design by calculating free energy changes in protein-water-ligand systems.

摘要

蛋白质 - 水 - 配体系统相互作用自由能的精确计算在分子识别和药物设计中起着重要作用,但这一点常常未得到充分考虑。我们报告了自由能热力学积分计算,用于评估Abl酪氨酸激酶SH3结构域中一个重要的紧密结合水分子的包含、忽略以及靶向和去除(即通过配体官能团进行系统取代)所产生的影响。该水分子对多个Abl - SH3结构域 - 配体系统相互作用自由能的影响表明,将其去除到本体溶剂中会伴随不利的自由能变化。在肽配体酪氨酸苯环中,只有用另外三个官能团(甲基、乙基、羟基、氨基和酰胺基中的)取代,在取代有序水分子后才会导致结合自由能的有利变化。这种计算方法通过计算蛋白质 - 水 - 配体系统中的自由能变化,为系统且严格地预测有序结构水分子对药物设计中配体修饰和优化的热力学影响提供了一条直接途径。

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