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聚丙氨酸肽在α-螺旋和多聚脯氨酸II构象中的非耦合肽键振动。

Uncoupled peptide bond vibrations in alpha-helical and polyproline II conformations of polyalanine peptides.

作者信息

Mikhonin Aleksandr V, Asher Sanford A

机构信息

Department of Chemistry, University of Pittsburgh, Pittsburgh, Pennsylvania 15260, USA.

出版信息

J Phys Chem B. 2005 Feb 24;109(7):3047-52. doi: 10.1021/jp0460442.

Abstract

We examined the 204-nm UV resonance Raman (UVR) spectra of the polyproline II (PPII) and alpha-helical states of a 21-residue mainly alanine peptide (AP) in different H2O/D2O mixtures. Our hypothesis is that if the amide backbone vibrations are coupled, then partial deuteration of the amide N will perturb the amide frequencies and Raman cross sections since the coupling will be interrupted; the spectra of the partially deuterated derivatives will not simply be the sum of the fully protonated and deuterated peptides. We find that the UVR spectra of the AmIII and AmII' bands of both the PPII conformation and the alpha-helical conformation (and also the PPII AmI, AmI', and AmII bands) can be exactly modeled as the linear sum of the fully N-H protonated and N-D deuterated peptides. Negligible coupling occurs for these vibrations between adjacent peptide bonds. Thus, we conclude that these peptide bond Raman bands can be considered as being independently Raman scattered by the individual peptide bonds. This dramatically simplifies the use of these vibrational bands in IR and Raman studies of peptide and protein structure. In contrast, the AmI and AmI' bands of the alpha-helical conformation cannot be well modeled as a linear sum of the fully N-H protonated and N-D deuterated derivatives. These bands show evidence of coupling between adjacent peptide bond vibrations. Care must be taken in utilizing the AmI and AmI' bands for monitoring alpha-helical conformations since these bands are likely to change as the alpha-helical length changes and the backbone conformation is perturbed.

摘要

我们研究了一种主要由丙氨酸组成的21个残基肽(AP)在不同H₂O/D₂O混合物中的聚脯氨酸II(PPII)和α-螺旋状态的204 nm紫外共振拉曼(UVR)光谱。我们的假设是,如果酰胺主链振动是耦合的,那么酰胺N的部分氘代将扰动酰胺频率和拉曼截面,因为耦合将被中断;部分氘代衍生物的光谱不会简单地是完全质子化和氘代肽的光谱之和。我们发现,PPII构象和α-螺旋构象的AmIII和AmII'带(以及PPII的AmI、AmI'和AmII带)的UVR光谱可以精确地模拟为完全N-H质子化和N-D氘代肽的线性和。相邻肽键之间的这些振动发生的耦合可以忽略不计。因此,我们得出结论,这些肽键拉曼带可以被认为是由单个肽键独立拉曼散射的。这极大地简化了这些振动带在肽和蛋白质结构的红外和拉曼研究中的应用。相比之下,α-螺旋构象的AmI和AmI'带不能很好地模拟为完全N-H质子化和N-D氘代衍生物的线性和。这些带显示出相邻肽键振动之间耦合的证据。在利用AmI和AmI'带监测α-螺旋构象时必须小心,因为随着α-螺旋长度的变化和主链构象的扰动,这些带可能会发生变化。

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