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XA和AX二肽红外光谱及可见拉曼光谱中酰胺I'强度和波数位置的侧链依赖性

Side chain dependence of intensity and wavenumber position of amide I' in IR and visible Raman spectra of XA and AX dipeptides.

作者信息

Measey Thomas, Hagarman Andrew, Eker Fatma, Griebenow Kai, Schweitzer-Stenner Reinhard

机构信息

Department of Chemistry, Drexel University, 3141 Chestnut Street, Philadelphia, Pennsylvania 19104, USA.

出版信息

J Phys Chem B. 2005 Apr 28;109(16):8195-205. doi: 10.1021/jp045762l.

Abstract

A series of AX and XA dipeptides in D2O have been investigated by FTIR, isotropic, and anisotropic Raman spectroscopy at acidic, neutral, and alkaline pD, to probe the influence of amino acid side chains on the amide I' band. We obtained a set of spectral parameters for each peptide, including intensities, wavenumbers, half-widths, and dipole moments, and found that these amide I' parameters are indeed dependent on the side chain. Side chains with similar characteristic properties were found to have similar effects on the amide I'. For example, dipeptides with aliphatic side chains were found to exhibit a downshift of the amide I' wavenumber, while those containing polar side chains experienced an increase in wavenumber. The N-terminal charge causes a substantial upshift of amide I', whereas the C-terminal charge causes a moderate decrease of the transition dipole moment. Density functional theory (DFT) calculations on the investigated dipeptides in vacuo yielded different correlations between theoretically and experimentally obtained wavenumbers for aliphatic/aromatic and polar/charged side chains, respectively. This might be indicative of a role of the hydration shell in transferring side chain-backbone interactions. For Raman bands, we found a correlation between amide I' depolarization ratio and wavenumber which reflects that some side chains (valine, histidine) have a significant influence on the Raman tensor. Altogether, the obtained data are of utmost importance for utilizing amide I as a tool for secondary structure analysis of polypeptides and proteins and providing an experimental basis for theoretical modeling of this important backbone mode. This is demonstrated by a rather accurate modeling for the amide I' band profiles of the IR, isotropic Raman, and anisotropic Raman spectra of the beta-amyloid fragment Abeta(1-82).

摘要

通过傅里叶变换红外光谱(FTIR)、各向同性和各向异性拉曼光谱,在酸性、中性和碱性pD条件下,对重水中的一系列AX和XA二肽进行了研究,以探究氨基酸侧链对酰胺I'带的影响。我们获得了每个肽的一组光谱参数,包括强度、波数、半高宽和偶极矩,发现这些酰胺I'参数确实依赖于侧链。发现具有相似特征性质的侧链对酰胺I'有相似的影响。例如,发现具有脂肪族侧链的二肽酰胺I'波数发生下移,而含有极性侧链的二肽波数增加。N端电荷导致酰胺I'显著上移,而C端电荷导致跃迁偶极矩适度降低。对真空中所研究二肽的密度泛函理论(DFT)计算,分别得出了脂肪族/芳香族和极性/带电侧链理论和实验获得的波数之间不同的相关性。这可能表明水合壳层在传递侧链-主链相互作用中发挥了作用。对于拉曼谱带,我们发现酰胺I'去极化率与波数之间存在相关性,这反映出一些侧链(缬氨酸、组氨酸)对拉曼张量有显著影响。总之,所获得的数据对于将酰胺I用作多肽和蛋白质二级结构分析的工具以及为这一重要主链模式的理论建模提供实验基础至关重要。这一点通过对β-淀粉样蛋白片段Abeta(1-82)的红外、各向同性拉曼和各向异性拉曼光谱的酰胺I'带轮廓进行相当准确的建模得到了证明。

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