Université de Lyon, F-69622, Lyon, France.
J Phys Chem A. 2010 Jul 1;114(25):6888-96. doi: 10.1021/jp102621m.
The conformation of model Arg(Ala)(4)X(Ala)(4)Lys+2H and Arg(Gly)(4)X(Gly)(4)Lys+2H peptides has been systematically investigated as a function of the central amino acid X through a combined experimental and theoretical approach. Mass spectrometry-based ion mobility measurements have been performed together with conformational sampling using replica-exchange molecular dynamics to probe the influence of each amino acid on the stable peptide conformation. Satisfactory agreement is obtained between measured and calculated diffusion cross section distributions. The results confirm the propensity of alanine-based peptides to form alpha-helices in the gas phase, differences between peptides arising from the local arrangement of the central side chain with respect to the charged ends. More generally, we find that charge solvation plays a major role in secondary structure stabilization, especially in the case of glycine-based peptides. The rich variety of conformations exhibited by the latter is qualitatively captured by the simulations. This work illustrates the potentiality of such combined experimental/theoretical strategy to determine peptide secondary structures. The present polyalanine and polyglycine peptides also offer a series of benchmark systems for future conformation-resolved studies.
通过实验和理论相结合的方法,系统研究了模型Arg(Ala)(4)X(Ala)(4)Lys+2H和Arg(Gly)(4)X(Gly)(4)Lys+2H肽作为中央氨基酸 X 的函数的构象。通过基于质谱的离子迁移率测量和使用复制交换分子动力学进行构象采样,探测了每个氨基酸对稳定肽构象的影响。测量和计算的扩散截面分布之间得到了令人满意的一致性。结果证实了基于丙氨酸的肽在气相中形成α-螺旋的倾向,肽之间的差异源于中央侧链相对于带电末端的局部排列。更一般地,我们发现电荷溶剂化在二级结构稳定化中起着主要作用,特别是在基于甘氨酸的肽的情况下。模拟定性地捕捉到了后者所表现出的丰富的构象多样性。这项工作说明了这种实验/理论相结合的策略在确定肽二级结构方面的潜力。目前的聚丙氨酸和聚甘氨酸肽也为未来的构象分辨研究提供了一系列基准系统。