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使用连续寿命分布解释蛋白质中的荧光衰减。

Interpretation of fluorescence decays in proteins using continuous lifetime distributions.

作者信息

Alcala J R, Gratton E, Prendergast F G

出版信息

Biophys J. 1987 Jun;51(6):925-36. doi: 10.1016/S0006-3495(87)83420-3.

Abstract

The decay of the tryptophanyl emission in proteins is often complex due to the sensitivity of the tryptophan excited state to its surroundings. The traditional analysis of the decay curve using exponential components is based on the identification of each component with a particular protein conformation. An alternative approach assumes that proteins can exhibit a large number of conformations and that, at room temperature, the interconversion rate between conformations can be of the same order of magnitude as the excited-state decay rate. Following this assumption, the analysis of the protein emission was performed using continuous distributions of lifetime values. The number of average protein conformations, the range of mobility around each conformation, and the rate of interconversion between conformations determines the characteristics of the lifetime distribution. The fluorescence decay from some single tryptophan proteins was measured using multifrequency phase fluorometry and analyzed using a sum of exponentials, unimodal and bimodal probability-density functions, and the analytical form for lifetime distribution obtained for a model in which the tryptophan residue can move in a single potential well. For ribonuclease T1 and neurotoxin variant 3, the sum of two exponentials and bimodal probability-density functions gave comparable results, whereas for phospholipase A2, the description of the decay required three exponentials or bimodal probability-density functions. Also the temperature dependence of the fluorescence decay was investigated. It was found that the lifetime distribution was broader and shifted toward longer lifetime values at lower temperature. The analysis of the decay of tryptophan in buffer and of some tryptophan derivatives gave single-exponential decays. The single-potential well lifetime distribution, which has only three adjustable parameters, gave good fits for all cases investigated, but in the case of phopholipase A2, the temperature dependence of the parameters that describe the single-potential well distribution indicated the inadequacy of this model at lower temperature, suggesting that multiple potential wells can describe better the decay for this protein.

摘要

由于色氨酸激发态对其周围环境敏感,蛋白质中色氨酸发射的衰减通常很复杂。使用指数成分对衰减曲线进行传统分析是基于将每个成分与特定蛋白质构象进行识别。另一种方法假设蛋白质可以呈现大量构象,并且在室温下,构象之间的相互转换速率与激发态衰减速率可以处于相同的数量级。基于此假设,使用寿命值的连续分布对蛋白质发射进行分析。平均蛋白质构象的数量、每个构象周围的迁移范围以及构象之间的相互转换速率决定了寿命分布的特征。使用多频相位荧光法测量了一些单色氨酸蛋白质的荧光衰减,并使用指数之和、单峰和双峰概率密度函数以及为色氨酸残基可在单个势阱中移动的模型获得的寿命分布解析形式进行分析。对于核糖核酸酶T1和神经毒素变体3,两个指数之和与双峰概率密度函数给出了可比的结果,而对于磷脂酶A2,衰减的描述需要三个指数或双峰概率密度函数。还研究了荧光衰减的温度依赖性。发现寿命分布在较低温度下更宽且向更长寿命值移动。对缓冲液中色氨酸和一些色氨酸衍生物的衰减分析给出了单指数衰减。仅具有三个可调参数的单势阱寿命分布对所有研究的情况都给出了很好的拟合,但在磷脂酶A2的情况下,描述单势阱分布的参数的温度依赖性表明该模型在较低温度下不适用,这表明多个势阱可以更好地描述该蛋白质的衰减。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f49a/1330026/35e512c3d7d6/biophysj00165-0082-a.jpg

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