J Phys Chem B. 2018 Jun 21;122(24):6357-6363. doi: 10.1021/acs.jpcb.8b03157. Epub 2018 Jun 8.
Studying a set of helix-folding polyalanine peptides with systematically inserted chiral inversions in explicit water, we investigate quantitatively the effect of chiral perturbations on the structural ensembles of the peptides, thereby assessing the extent to which the backbone structure is able to fold in the presence of systematic heterochiral perturbations. Starting from the homochiral l-Ala peptide, we invert the backbone chiralities of Ala residues one by one along a specific perturbation pathway, until reaching the homochiral d-Ala peptide. Analysis of the helical contents of the simulated structural ensembles of the peptides shows that even a single inversion in the middle of the peptide completely breaks the helical structure in its vicinity and drastically reduces the helical content of the peptide. Further inversions in the middle of the peptide monotonically decrease the original helical content, that is, the right-handed helical content for l-Ala, and increase the helical content of the opposite chirality. Further analysis of the peptide ensembles using several size- and shape-related order parameters also indicate the drastic global changes in the peptide structure due to the local effects caused by the chiral inversions, such as formation of a reverse turn. However, the degree of the structural changes introduced by opposite chirality substitutions depends on the position of the inversion.
在明确的水环境中,我们研究了一组具有系统插入手性反转的螺旋折叠聚丙氨酸肽,定量研究了手性扰动对肽结构集合的影响,从而评估了在存在系统异手性扰动的情况下,骨架结构能够折叠的程度。从同手性 l-Ala 肽开始,我们沿着特定的扰动路径逐个反转 Ala 残基的骨架手性,直到达到同手性 d-Ala 肽。对肽模拟结构集合的螺旋含量的分析表明,即使在肽的中间只进行一次反转,也会完全破坏其附近的螺旋结构,并大大降低肽的螺旋含量。肽中间的进一步反转单调地降低原始螺旋含量,即 l-Ala 的右手螺旋含量,并增加相反手性的螺旋含量。使用几个与大小和形状相关的序参数进一步分析肽集合也表明,由于手性反转引起的局部效应,如形成反向转弯,肽结构会发生剧烈的全局变化。然而,由相反手性取代引入的结构变化程度取决于反转的位置。