Han S J, Kang Y K
Department of Chemistry, Chungbuk National University, Cheongju, Korea.
Int J Pept Protein Res. 1993 Dec;42(6):518-26. doi: 10.1111/j.1399-3011.1993.tb00359.x.
Conformational free energy calculations using an empirical potential (ECEPP/2) and the hydration shell model were carried out on the N-acetyl-N'-methylamides of Pro-Xaa dipeptides (Xaa = Ala, Leu, Val, Gly, Cys, Met, Phe, Tyr, Asn, Asp, and Ser) with trans and cis peptide bonds preceding proline residue in the unhydrated and hydrated states. As compared with the results obtained by using the earlier version of ECEPP, the values of beta-bend probabilities are doubled. The average calculated population of cis-dipeptide is about 4%, which is close to the abundance obtained from the analysis of X-ray crystal structures of proteins. The beta-bends are the most dominant structures of cis-dipeptides. Type I, usually having intramolecular hydrogen bonds, contributes greatly to the beta-bend conformations of trans- and cis-dipeptides. However, type I beta-bends of cis-dipeptides do not have any hydrogen bonds. By including the hydration, the beta-bend probabilities for trans- and cis-dipeptides decreased, indicating that the interactions of water molecules with a backbone or side-chain may force the dipeptides to be more distorted or extended. In particular, type II is found to be a dominant beta-bend conformation of trans- and cis-Pro-Gly dipeptides in both the unhydrated and hydrated states. In general, the calculated propensities for Pro-Xaa dipeptides to adopt beta-bend conformations are reasonably consistent with available experimental data. From comparing conformations of Pro and Xaa residues in the dipeptides and single residues, we found that inter-residue interactions and hydration are of importance in determining the conformational properties of the Pro-Xaa dipeptide.
使用经验势(ECEPP/2)和水合壳模型,对脯氨酸残基前具有反式和顺式肽键的Pro-Xaa二肽(Xaa = 丙氨酸、亮氨酸、缬氨酸、甘氨酸、半胱氨酸、甲硫氨酸、苯丙氨酸、酪氨酸、天冬酰胺、天冬氨酸和丝氨酸)的N-乙酰基-N'-甲基酰胺在无水和水合状态下进行了构象自由能计算。与使用早期版本的ECEPP获得的结果相比,β-转角概率值增加了一倍。计算得到的顺式二肽的平均丰度约为4%,这与从蛋白质X射线晶体结构分析中获得的丰度相近。β-转角是顺式二肽最主要的结构。通常具有分子内氢键的I型对反式和顺式二肽的β-转角构象有很大贡献。然而,顺式二肽的I型β-转角没有任何氢键。通过考虑水合作用,反式和顺式二肽的β-转角概率降低,这表明水分子与主链或侧链的相互作用可能迫使二肽更加扭曲或伸展。特别是,发现II型是无水和水合状态下反式和顺式Pro-Gly二肽的主要β-转角构象。一般来说,计算得到的Pro-Xaa二肽采用β-转角构象的倾向与现有的实验数据合理一致。通过比较二肽中Pro和Xaa残基以及单个残基的构象,我们发现残基间相互作用和水合作用在决定Pro-Xaa二肽的构象性质方面很重要。