Kang Young Kee, Choi Ha Young
Department of Chemistry, Chungbuk National University, Cheongju, Chungbuk 361-763, South Korea.
Biophys Chem. 2004 Oct 1;111(2):135-42. doi: 10.1016/j.bpc.2004.05.006.
We report here the results on N-acetyl-L-proline-N'-methylamide (Ac-Pro-NHMe) calculated at the HF/6-31+G(d) level with the conductor-like polarizable continuum model (CPCM) of self-consistent reaction field methods to investigate the changes of backbone and prolyl ring along the cis-trans isomerization of the prolyl peptide bond. From the potential energy surface, the barrier to ring flip from the down-puckered conformation to the up-puckered one is estimated to be 2.5 and 3.2 kcal/mol for trans and cis conformers of Ac-Pro-NHMe, respectively. In particular, the ring flip seems to be inaccessible in the intermediate regions between trans and cis conformations, because of higher barriers (approximately 13-19 kcal/mol) to rotation of the prolyl peptide bond. The torsion angles for backbone and prolyl ring vary largely around the transition states at omega' approximately 120 degrees and -70 degrees for the prolyl peptide bond. Three kinds of puckering amplitudes show the same trend of puckering along the cis-trans isomerization although their absolute values are different. In particular, trans and cis conformations have the almost same degree of puckering. The cis populations and barriers to rotation of the prolyl peptide bond for Ac-Pro-NHMe are increased with the increase of solvent polarity, which is mainly ascribed to the decreases of relative free energies for cis conformations and the increase of relative free energies for transition states.
我们在此报告了使用自洽反应场方法的导体类极化连续介质模型(CPCM)在HF/6-31+G(d)水平下计算N-乙酰-L-脯氨酸-N'-甲基酰胺(Ac-Pro-NHMe)的结果,以研究脯氨酰肽键顺反异构化过程中主链和脯氨酰环的变化。从势能面来看,对于Ac-Pro-NHMe的反式和顺式构象,脯氨酰环从下皱构象翻转到上皱构象的势垒分别估计为2.5和3.2千卡/摩尔。特别地,由于脯氨酰肽键旋转的势垒较高(约13 - 19千卡/摩尔),在反式和顺式构象之间的中间区域,环翻转似乎是无法实现的。对于脯氨酰肽键,在ω'约为120度和 - 70度的过渡态附近,主链和脯氨酰环的扭转角变化很大。三种褶皱幅度沿着顺反异构化呈现相同的褶皱趋势,尽管它们的绝对值不同。特别地,反式和顺式构象具有几乎相同的褶皱程度。Ac-Pro-NHMe的脯氨酰肽键的顺式构象比例和旋转势垒随着溶剂极性的增加而增加,这主要归因于顺式构象相对自由能的降低和过渡态相对自由能的增加。