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关于荧光各向异性衰减的圆锥内摆动分析

On the wobbling-in-cone analysis of fluorescence anisotropy decay.

作者信息

Kinosita K, Ikegami A, Kawato S

出版信息

Biophys J. 1982 Feb;37(2):461-4. doi: 10.1016/S0006-3495(82)84692-4.

Abstract

Interpretation of fluorescence anisotropy decay for the case of restricted rotational diffusion often requires a model. To investigate the extent of model dependence, two models are compared: a strict cone model, in which a fluorescent probe wobbles uniformly within a cone, and a Gaussian model, where the stationary distribution of the probe orientation is of a Gaussian type. For the same experimental anisotropy decay, analysis by the Gaussian model predicts a smaller value for the rate of wobbling motion than the strict cone analysis, but the difference is 35% at most; the cone angle obtained by the strict cone analysis agrees closely with the effective width of the Gaussian distribution. The results suggest that, when only two parameters (the rate and the angular range) are extracted from an experiment, the choice of a model is not crucial as long as the model contains the essential feature, e.g., the more-or-less conical restriction, of the motion under study. Model-independent analyses are also discussed.

摘要

对于受限旋转扩散情况下荧光各向异性衰减的解释通常需要一个模型。为了研究模型依赖性的程度,比较了两种模型:一种是严格圆锥模型,其中荧光探针在一个圆锥内均匀摆动;另一种是高斯模型,其中探针取向的稳态分布是高斯型的。对于相同的实验各向异性衰减,高斯模型分析预测的摆动运动速率值比严格圆锥分析预测的值小,但差异最多为35%;严格圆锥分析得到的圆锥角与高斯分布的有效宽度密切吻合。结果表明,当仅从实验中提取两个参数(速率和角度范围)时,只要模型包含所研究运动的基本特征,例如或多或少的锥形限制,模型的选择就不是关键的。还讨论了与模型无关的分析。

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A theory of fluorescence polarization decay in membranes.膜中荧光偏振衰减理论。
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A theory of fluorescence polarization decay in membranes.膜中荧光偏振衰减理论。
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