Gord Joseph R, Walsh Patrick S, Fisher Brian F, Gellman Samuel H, Zwier Timothy S
Department of Chemistry, Purdue University , 560 Oval Drive, West Lafayette, Indiana 47907, United States.
J Phys Chem B. 2014 Jul 17;118(28):8246-56. doi: 10.1021/jp5015884. Epub 2014 Apr 2.
The folding preferences of two capped, constrained β/γ-dipeptide isomers, Ac-βACPC-γACHC-NHBn and Ac-γACHC-βACPC-NHBn, (designated βγ and γβ, respectively), have been investigated using single- and double-resonance ultraviolet and infrared spectroscopy in the gas phase. These capped β/γ-dipeptides have the same number of backbone atoms between their N- and C-termini as a capped α-tripeptide and thus serve as a minimal structural unit on which to test their ability to mimic the formation of the first turn of an α-helix. Resonant two-photon ionization and UV-UV hole-burning spectroscopy were performed in the S0-S1 region, revealing the presence of three unique conformations of βγ and a single conformation of γβ. Resonant ion-dip infrared spectra were obtained in the NH stretch region from 3300 to 3500 cm(-1) and in both the amide I and amide II regions from 1400 to 1800 cm(-1). These infrared spectra were compared to computational predictions from density functional theory calculations at the M05-2X/6-31+G(d) level, leading to assignments for the observed conformations. Two unique bifurcated C8/C13 H-bonded ring structures for βγ and a single bifurcated C9/C13 H-bonded ring structure for γβ were observed. In all cases, the H-bonding patterns faithfully mimic the first full turn of an α-helix, most notably by containing a 13-membered H-bonded cycle but also by orienting the interior amide group so that it is poised to engage in a second C13 H-bond as the β/γ-peptide lengthens in size. The structural characteristics of the β/γ-peptide version of the 13-helix turn are compared with the α-helix counterpart and with a reported crystal structure for a longer β/γ-peptide oligomer.
利用气相中的单共振和双共振紫外及红外光谱,研究了两种带帽、受限的β/γ - 二肽异构体Ac-βACPC-γACHC-NHBn和Ac-γACHC-βACPC-NHBn(分别命名为βγ和γβ)的折叠偏好。这些带帽的β/γ - 二肽在其N端和C端之间的主链原子数与带帽的α - 三肽相同,因此作为一个最小结构单元,用于测试它们模拟α - 螺旋第一圈形成的能力。在S0 - S1区域进行了共振双光子电离和UV - UV空穴烧蚀光谱,揭示了βγ存在三种独特构象,γβ存在一种单一构象。在3300至3500 cm⁻¹的NH伸缩区域以及1400至1800 cm⁻¹的酰胺I和酰胺II区域获得了共振离子偶极红外光谱。将这些红外光谱与M05 - 2X/6 - 31 + G(d)水平的密度泛函理论计算的预测结果进行比较,从而对观察到的构象进行归属。观察到βγ有两种独特的分叉C8/C13氢键环结构,γβ有一个单一的分叉C9/C13氢键环结构。在所有情况下,氢键模式都忠实地模拟了α - 螺旋的第一个完整圈,最显著的是包含一个13元氢键环,而且通过使内部酰胺基团定向,以便随着β/γ - 肽尺寸的增加它准备参与第二个C13氢键。将13 - 螺旋圈的β/γ - 肽版本的结构特征与α - 螺旋对应物以及报道的更长β/γ - 肽寡聚物的晶体结构进行了比较。