首页> 外文期刊>Biophysical Chemistry: An International Journal Devoted to the Physical Chemistry of Biological Phenomena >SECONDARY SOLVENT EFFECTS ON THE CIRCULAR DICHROISM SPECTRA OF POLYPEPTIDES IN NON-AQUEOUS ENVIRONMENTS - INFLUENCE OF POLARISATION EFFECTS ON THE FAR ULTRAVIOLET SPECTRA OF ALAMETHICIN
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SECONDARY SOLVENT EFFECTS ON THE CIRCULAR DICHROISM SPECTRA OF POLYPEPTIDES IN NON-AQUEOUS ENVIRONMENTS - INFLUENCE OF POLARISATION EFFECTS ON THE FAR ULTRAVIOLET SPECTRA OF ALAMETHICIN

机译:非水环境中多肽对分子二色性光谱的二次溶剂作用-极化作用对阿拉善菌素远紫外光谱的影响

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摘要

Secondary solvent effects on the far ultraviolet circular dichroism spectra of the polypeptide alamethicin have been studied systematically in a series of alcohols. The magnitudes of the shifts have been correlated with the physical properties of the solvents in an attempt to discover the underlying physical principles responsible for these shifts. The solvent effect in non-aqueous solvents generally produces spectral transitions with peaks found at longer wavelengths than those in aqueous solution, and is correlated with increasing refractive indices and with decreasing dielectric constants of the solvents. It appears that polarisation effects are the major contributors to the interactions between the chromophore and solvent molecules, and hence give rise to the red shift. It is clear that this secondary solvent effect is an important factor which should be considered in the examination and estimation of polypeptide secondary structures in non-aqueous solvents and membranes. [References: 33]
机译:已在一系列醇中系统研究了次要溶剂对多肽alamethicin的远紫外圆二色性光谱的影响。位移的大小已与溶剂的物理性质相关联,以试图发现造成这些位移的基本物理原理。在非水溶剂中的溶剂效应通常会产生光谱跃迁,该跃迁的峰值出现在比水溶液中更长的波长处,并且与折射率的增加和溶剂介电常数的下降有关。似乎偏振效应是生色团与溶剂分子之间相互作用的主要因素,因此引起红移。显然,这种次级溶剂作用是在非水溶剂和膜中检查和评估多肽二级结构时应考虑的重要因素。 [参考:33]

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