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[蛋白质固有荧光的偏振。I. 决定偏振光谱形式的因素]

[Polarization of the intrinsic fluorescence of proteins. I. Factors determining the form of the polarization spectrum].

作者信息

Kuznetsova I M, Kirik I I, Turoverov K K

出版信息

Mol Biol (Mosk). 1981 Sep-Oct;15(5):989-99.

PMID:6795445
Abstract

The dependence of the slopes of normalized Perrin plots on the excitation wavelength was established. It was shown that the cause of this effect is the anisotropy of the Brownian rotation of proteins, which must be regarded as asymmetrical particles with specific, but not random, orientation of tryptophan with respect to the main axes of the macromolecule. These findings were analysed on the basis of the rotational depolarization theory of such systems, applied for the case when bands of two absorption oscillators overlap as it is for oscillators 1La and 1Lb in the longest wavelength absorption band of tryptophan. It was shown that anisotropy of Brownian molecular rotation is one of the factors that determines the form of the polarization spectrum. The difference of the polarization spectrum of proteins from that of tryptophan, extrapolated to the infinite viscosity, is determined by energy transfer processes in proteins.

摘要

确定了归一化佩林图斜率对激发波长的依赖性。结果表明,这种效应的原因是蛋白质布朗旋转的各向异性,必须将其视为不对称粒子,色氨酸相对于大分子主轴具有特定而非随机的取向。基于此类系统的旋转去极化理论对这些发现进行了分析,该理论适用于两个吸收振荡器的谱带重叠的情况,就像色氨酸最长波长吸收带中的振荡器1La和1Lb那样。结果表明,布朗分子旋转的各向异性是决定偏振光谱形式的因素之一。蛋白质偏振光谱与色氨酸偏振光谱(外推至无限粘度时)的差异由蛋白质中的能量转移过程决定。

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