Makowski Mariusz, Sobolewski Emil, Czaplewski Cezary, Liwo Adam, Ołdziej Stanisław, No Joo Hwan, Scheraga Harold A
Baker Laboratory of Chemistry and Chemical Biology, Cornell University, Ithaca, New York 14853-1301, USA.
J Phys Chem B. 2007 Mar 22;111(11):2925-31. doi: 10.1021/jp065918c. Epub 2007 Feb 27.
The potentials of mean force of homodimers of the molecules modeling hydrophobic amino acid side chains (ethane (for alanine), propane (for proline), isobutane (for valine), isopentane (for leucine and isoleucine), ethylbenzene (for phenylalanine), and methyl propyl sulfide (for methionine)) were determined by umbrella-sampling molecular dynamics simulations in explicit water as functions of distance and orientation. Analytical expressions consisting of the Gay-Berne term to represent effective van der Waals interactions and the cavity term derived in paper 1 of this series were fitted to the potentials of mean force. The positions and depths of the contact minima and the positions and heights of the desolvation maxima, including their dependence on the orientation of the molecules, were well represented by the analytical expressions for all systems, which justifies use of such potentials in coarse-grain protein-folding simulations.
通过在显式水中进行伞形抽样分子动力学模拟,确定了模拟疏水氨基酸侧链的分子(乙烷(对应丙氨酸)、丙烷(对应脯氨酸)、异丁烷(对应缬氨酸)、异戊烷(对应亮氨酸和异亮氨酸)、乙苯(对应苯丙氨酸)和甲基丙基硫醚(对应甲硫氨酸))同二聚体的平均力势,该平均力势是距离和取向的函数。由表示有效范德华相互作用的盖伊 - 伯恩项和本系列论文1中推导的空穴项组成的解析表达式被拟合到平均力势上。对于所有系统,接触最小值的位置和深度以及去溶剂化最大值的位置和高度,包括它们对分子取向的依赖性,都能被解析表达式很好地表示,这证明了在粗粒化蛋白质折叠模拟中使用此类势是合理的。