Schubert Franziska, Rossi Mariana, Baldauf Carsten, Pagel Kevin, Warnke Stephan, von Helden Gert, Filsinger Frank, Kupser Peter, Meijer Gerard, Salwiczek Mario, Koksch Beate, Scheffler Matthias, Blum Volker
Fritz-Haber-Institut der Max-Planck-Gesellschaft, D-14195 Berlin, Germany.
Phys Chem Chem Phys. 2015 Mar 21;17(11):7373-85. doi: 10.1039/c4cp05541a.
Reliable, quantitative predictions of the structure of peptides based on their amino-acid sequence information are an ongoing challenge. We here explore the energy landscapes of two unsolvated 20-residue peptides that result from a shift of the position of one amino acid in otherwise the same sequence. Our main goal is to assess the performance of current state-of-the-art density-functional theory for predicting the structure of such large and complex systems, where weak interactions such as dispersion or hydrogen bonds play a crucial role. For validation of the theoretical results, we employ experimental gas-phase ion mobility-mass spectrometry and IR spectroscopy. While unsolvated Ac-Ala19-Lys + H(+) will be shown to be a clear helix seeker, the structure space of Ac-Lys-Ala19 + H(+) is more complicated. Our first-principles structure-screening strategy using the dispersion-corrected PBE functional (PBE + vdW(TS)) identifies six distinctly different structure types competing in the low-energy regime (≈16 kJ mol(-1)). For these structure types, we analyze the influence of the PBE and the hybrid PBE0 functional coupled with either a pairwise dispersion correction (PBE + vdW(TS), PBE0 + vdW(TS)) or a many-body dispersion correction (PBE + MBD*, PBE0 + MBD*). We also take harmonic vibrational and rotational free energy into account. Including this, the PBE0 + MBD* functional predicts only one unique conformer to be present at 300 K. We show that this scenario is consistent with both experiments.
基于氨基酸序列信息对肽结构进行可靠的定量预测仍是一项持续的挑战。我们在此探索了两条未溶剂化的20残基肽的能量景观,这两条肽是由于在相同序列中一个氨基酸位置的移动而产生的。我们的主要目标是评估当前最先进的密度泛函理论在预测此类大型复杂系统结构方面的性能,其中色散或氢键等弱相互作用起着关键作用。为了验证理论结果,我们采用了实验气相离子迁移率 - 质谱和红外光谱。虽然未溶剂化的Ac - Ala19 - Lys + H(+) 将被证明是一个明显的螺旋寻找者,但Ac - Lys - Ala19 + H(+) 的结构空间更为复杂。我们使用色散校正的PBE泛函(PBE + vdW(TS))的第一性原理结构筛选策略识别出六种在低能量区域(≈16 kJ mol(-1))竞争的明显不同的结构类型。对于这些结构类型,我们分析了PBE和混合PBE0泛函与成对色散校正(PBE + vdW(TS),PBE0 + vdW(TS))或多体色散校正(PBE + MBD*,PBE0 + MBD*)相结合的影响。我们还考虑了谐振子振动和转动自由能。考虑到这一点,PBE0 + MBD*泛函预测在300 K时仅存在一种独特的构象异构体。我们表明这种情况与两个实验均一致。