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Temperature dependent 2nd derivative absorbance spectroscopy of aromatic amino acids as a probe of protein dynamics

机译:温度依赖性芳香族氨基酸的二阶导数吸收光谱作为蛋白质动力学的探针

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摘要

Proteins display a broad peak in 250–300 nm region of their UV spectrum containing multiple overlapping bands arising from the aromatic rings of phenylalanine, tyrosine, and tryptophan residues. Employing high resolution 2nd derivative absorbance spectroscopy, these overlapping absorption bands can be highly resolved and therefore provide a very sensitive measure of changes in the local microenvironment of the aromatic side chains. This has traditionally been used to detect both subtle and dramatic (i.e., unfolding) conformational alterations of proteins. Herein, we show that plots of the temperature dependent 2nd derivative peak positions of aromatic residues have measurable slopes before protein unfolding and that these slopes are sensitive to the dielectric properties of the surrounding microenvironment. We further demonstrate that these slopes correlate with hydration of the buried aromatic residues in protein cores and can therefore be used as qualitative probes of protein dynamics.
机译:蛋白质在其紫外线光谱的250-300 nm区域显示一个宽峰,其中包含由苯丙氨酸,酪氨酸和色氨酸残基的芳香环引起的多个重叠谱带。利用高分辨率的2 导数吸收光谱法,这些重叠的吸收带可以被高度分辨,因此可以非常灵敏地测量芳族侧链局部微环境的变化。传统上,这已被用于检测蛋白质的细微和剧烈的(即展开)构象变化。本文中,我们显示了芳香残基的温度相关的2 衍生峰位置的图在蛋白质解折叠之前具有可测量的斜率,并且这些斜率对周围微环境的介电性质敏感。我们进一步证明,这些斜率与蛋白质核心中埋藏的芳族残基的水合作用相关,因此可以用作蛋白质动力学的定性探针。

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