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二维荧光共振能量转移作为蛋白质折叠的探针:一项理论研究。

Two-dimensional fluorescence resonance energy transfer as a probe for protein folding: a theoretical study.

作者信息

Ting Christina L, Makarov Dmitrii E

机构信息

Department of Chemistry and Biochemistry, University of Texas at Austin, Austin, TX 78712, USA.

出版信息

J Chem Phys. 2008 Mar 21;128(11):115102. doi: 10.1063/1.2835611.

Abstract

We describe a two-dimensional (2D), four-color fluorescence resonance energy transfer (FRET) scheme, in which the conformational dynamics of a protein is followed by simultaneously observing the FRET signal from two different donor-acceptor pairs. For a general class of models that assume Markovian conformational dynamics, we relate the properties of the emission correlation functions to the rates of elementary kinetic steps in the model. We further use a toy folding model that treats proteins as chains with breakable cross-links to examine the relationship between the cooperativity of folding and FRET data and to establish what additional information about the folding dynamics can be gleaned from 2D, as opposed to one-dimensional FRET experiments. We finally discuss the potential advantages of the four-color FRET over the three-color FRET technique.

摘要

我们描述了一种二维(2D)四色荧光共振能量转移(FRET)方案,其中通过同时观察来自两个不同供体 - 受体对的FRET信号来跟踪蛋白质的构象动力学。对于一类假设为马尔可夫构象动力学的一般模型,我们将发射相关函数的性质与模型中基本动力学步骤的速率联系起来。我们进一步使用一个将蛋白质视为具有可断裂交联的链的简化折叠模型,来研究折叠协同性与FRET数据之间的关系,并确定与一维FRET实验相比,从二维FRET实验中可以收集到哪些关于折叠动力学的额外信息。我们最后讨论了四色FRET相对于三色FRET技术的潜在优势。

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