首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Different Degrees of Disorder in Long Disordered Peptides Can Be Discriminated by Vibrational Spectroscopy
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Different Degrees of Disorder in Long Disordered Peptides Can Be Discriminated by Vibrational Spectroscopy

机译:振动光谱法可区分长紊乱肽中不同程度的紊乱

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The isotropic Raman, anisotropic Raman, IR, and vibrational circular dichroism (VCD) amide I profiles of a 20 residue homopeptide were calculated for different conformational mixtures that one would generally characterize as random coil or disordered. We first show that (1) pure polyproline II (pPII) coils, (2) statistical coils with different fractions pPII, β-strand, and right-handed helical residue conformations, and (3) ideal random coils (nearly equal probabilities for pPII, β, and right-handed helical) can be discriminated based on their respective VCD signal and, to a more limited extent, by means of the peak positions and asymmetries of the corresponding IR and Raman bands. Since molecular dynamics (MD) simulations of unfolded peptides (e.g., Aβ-segments) suggest a mixture of statistical coil and temporarily folded conformations, we calculated the amide I profiles of such mixtures composed of helical, β-strand, and disordered conformers and show that they give rise to rather distinct amide I profiles. Mixtures of regular structures with statistical coil segments can be discriminated from pure statistical and random coils by the amplitude of the negative amide I couplet in the VCD spectrum. We finally demonstrate the usefulness of such simulations by applying them to monomeric state of salmon calcitonin and the amyloid β fragment Aβ_(1-28), for which NMR data provide evidence for a coexistence between statistical coil and helical conformations. Altogether, our results show that the combined use of the four amide I profiles provides spectroscopists with a powerful tool to discriminate between different conformational manifolds that long unfolded and disordered peptides and proteins might adopt in solution.
机译:针对不同的构象混合物,计算了20种残基同肽的各向同性拉曼,各向异性拉曼,红外光谱和振动圆二色性(VCD)酰胺I谱,通常将其表征为无规卷曲或无序。我们首先显示(1)纯多脯氨酸II(pPII)线圈,(2)具有不同分数pPII,β链和右旋螺旋残基构象的统计线圈,以及(3)理想随机线圈(pPII几率几乎相等) ,β和右手螺旋)可以根据它们各自的VCD信号加以区分,并在更有限的程度上借助相应的IR和拉曼频带的峰值位置和不对称性加以区分。由于未折叠肽段(例如Aβ段)的分子动力学(MD)模拟表明统计线圈和临时折叠构象的混合物,因此我们计算了由螺旋,β链和无序构象异构体组成的此类混合物的酰胺I谱,并显示他们产生了相当独特的酰胺I谱。带有统计线圈段的规则结构的混合物可以通过VCD光谱中负I偶联的幅度与纯统计线圈和随机线圈区分开。最后,我们将这些模拟应用于鲑鱼降钙素和淀粉样蛋白β片段Aβ_(1-28)的单体状态,证明了其有用性,而NMR数据为统计线圈和螺旋构象之间的共存提供了证据。总而言之,我们的结果表明,四种酰胺I谱的组合使用为光谱学家提供了一种强大的工具,可区分溶液中长时间未折叠且杂乱的肽和蛋白质可能采用的不同构象流形。

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