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通过可变频率相位调制荧光法解析复杂各向异性衰减:一项刺激研究。

Resolution of complex anisotropy decays by variable frequency phase-modulation fluorometry: a stimulation study.

作者信息

Maliwal B P, Lakowicz J R

出版信息

Biochim Biophys Acta. 1986 Sep 26;873(2):161-72. doi: 10.1016/0167-4838(86)90042-7.

Abstract

We used simulations to determine the resolution of complex anisotropy decay laws which is obtainable by frequency-domain fluorometry. The simulations include the effects of torsional and segmental motions of tryptophan residues in proteins, the multiple correlation times of asymmetric molecules, and three-component anisotropy decays. For a protein with a global correlation time of 10 ns it should be possible to resolve torsional motions with correlation times as short as 10 ps if the amplitude of the rapid motion is at least 20% of the total anisotropy decay with r0 = 0.4. Correlation times which differ by only 1.4-fold can be resolved, making this method useful for determination of the shape of proteins and other asymmetric molecules. It is possible to resolve three-component anisotropy decays if the overall difference among the correlation times is 30-fold. Such resolution will be useful for understanding of internal motions of proteins and membranes. The validity of these predictions is demonstrated in the subsequent paper using experimental data for melittin in solution and when bound to membranes (Maliwal, B.P., Hermetter, A. and Lakowicz, J.R. (1986) Biochim. Biophys. Acta 873, 173-181).

摘要

我们利用模拟来确定通过频域荧光法可获得的复杂各向异性衰减定律的分辨率。这些模拟包括蛋白质中色氨酸残基的扭转和片段运动的影响、不对称分子的多个相关时间以及三分量各向异性衰减。对于全局相关时间为10 ns的蛋白质,如果快速运动的幅度至少为总各向异性衰减(r0 = 0.4)的20%,则应该能够分辨出相关时间短至10 ps的扭转运动。仅相差1.4倍的相关时间可以被分辨出来,这使得该方法对于确定蛋白质和其他不对称分子的形状很有用。如果相关时间之间的总体差异为30倍,则可以分辨出三分量各向异性衰减。这种分辨率将有助于理解蛋白质和膜的内部运动。后续论文使用蜂毒肽在溶液中和与膜结合时的实验数据(Maliwal, B.P., Hermetter, A. 和Lakowicz, J.R. (1986) Biochim. Biophys. Acta 873, 173 - 181)证明了这些预测的有效性。

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