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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Isotopically Site-Selected Dynamics of a Three-Stranded beta-Sheet Peptide Detected with Temperature-Jump Infrared-Spectroscopy
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Isotopically Site-Selected Dynamics of a Three-Stranded beta-Sheet Peptide Detected with Temperature-Jump Infrared-Spectroscopy

机译:具有温度跳转红外光谱检测的三链β-片肽的同位素位点选择的动态

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摘要

Infrared detected temperature-jump (T-jump) spectroscopy and site-specific isotopic labeling were applied to study a model three-stranded beta-sheet peptide with the goal of individually probing the dynamics of strand and turn structural elements. This peptide had two (D)Pro-Gly (pG) turn sequences to stabilize the two component hairpins, which were labeled with C-13=O on each of the Gly residues to resolve them spectroscopically. Labeling the second turn on the amide preceding the (D)Pro (Xxx-(D)Pro amide) provided an alternate turn label as a control. Placing C-13=O labels on specific in-strand residues gave shifted modes that overlap the Xxx-(D)Pro amide I' modes. Their impact could be separated from the turn dynamics by a novel difference transient analysis approach. Fourier-transform infrared spectra were modeled with density functional theory computations which showed the local, isotope-selected vibrations were effectively uncoupled from the other amide I modes. Our T-jump dynamics results, combined with nuclear magnetic resonance structures and equilibrium spectral measurements, showed the first turn to be most stable and best formed with the slowest dynamics, whereas the second turn and first strand (N-terminus) had similar dynamics, and the third strand (C-terminus) had the fastest dynamics and was the least structured. The relative dynamics of the strands, Xxx-(D)Pro amides, and C-13-labeled Gly residues on the turns also qualitatively corresponded to molecular dynamics (MD) simulations of turn and strand fluctuations. MD trajectories indicated the turns to be bistable, with the first turn being Type I' and the second turn flipping from I' to II'. The differences in relaxation times for each turn and the separate strands revealed that the folding process of this turn-stabilized beta-sheet structure proceeds in a multistep process.
机译:应用红外检测的温度跳跃(T-jump)光谱和位点特异的同位素标记,以研究模型三链β-肽,其目的是单独探测股线的动力学和转动结构元件的目的。该肽具有两(d)型聚糖(pg)转序列,以稳定两个组分发夹,其用C-13 = O标记在每一个残基上以分辨它们的光谱分析。标记(d)pro前面的酰胺(xxx-(d)pro酰胺)的标记提供了交替转弯标签作为对照。将C-13 = O标签放置在特定的股线残留物上,给出了与XXX-(D)PRO酰胺I'模式重叠的换档模式。它们的影响可以通过新颖的差异瞬态分析方法与转弯动力学分开。傅里叶变换红外光谱用密度函数理论计算建模,显示出局部,同位素选择的振动有效地从其他酰胺I模式耦合。我们的T跳跃动力学结果,结合核磁共振结构和平衡光谱测量,表明第一卷最稳定,最佳动态形成,而第二轮和第一股(N-Terminus)具有相似的动态,第三链(C-Terminus)具有最快的动态,并且是最少的结构。股线的相对动态,XXX-(D)PRO酰胺和C-13标记的GLY残基在转弯上也定性地对应于转弯和绞合波动的分子动力学(MD)模拟。 MD轨迹表示旋转旋转,第一个转弯为I',第二个转向从I'翻转到II'。每个转弯和单独的股线的弛豫时间的差异显示,该转弯型β-片材结构的折叠过程在多步骤过程中进行。

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