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牛血清白蛋白酸膨胀的荧光寿命和光谱研究。

Fluorescence lifetime and spectral study of the acid expansion of bovine serum albumin.

作者信息

Brewer J M, Bastiaens P, Lee J

机构信息

Department of Biochemistry, School of Chemical Sciences, University of Georgia, Athens 30602.

出版信息

Biophys Chem. 1987 Oct;28(1):77-88. doi: 10.1016/0301-4622(87)80076-5.

Abstract

The fluorescence lifetimes of the tryptophan residues of bovine serum albumin were measured in the native and acid-expanded conformation. A three-exponential process is required to fit the fluorescence decay data. The results are interpreted empirically in terms of two emitting species. The emission at longer wavelength (360 nm) has slower rates of decay than that at shorter wavelength (325 nm). For both emitting species the average lifetime decreases when the N-F transition occurs and shortens further when the protein expands. Rotational correlation times, derived from the decay of the fluorescence anisotropy of the tryptophan residues, suggest that longer emission wavelengths are associated with somewhat shorter correlation times. There is no certain indication of any independent motion of the tryptophans in any conformation, although some very fast process, perhaps Raman scattering, appears to occur. On acid expansion the long correlation times decrease to around 10 ns in the fully expanded form. Static quenching experiments using I- or acrylamide suggest a greater average exposure of the tryptophans when the protein is most greatly expanded. This is despite the fact that the fluorescence emission maximum shifts to shorter wavelength under these conditions. Also, there is no difference in accessibility to quenching between the longer and shorter wavelength emissions.

摘要

在天然构象和酸膨胀构象下测量了牛血清白蛋白色氨酸残基的荧光寿命。需要一个三指数过程来拟合荧光衰减数据。结果根据两种发射物种进行经验性解释。较长波长(360nm)处的发射衰减速率比较短波长(325nm)处的慢。对于两种发射物种,当发生N - F转变时平均寿命降低,并且当蛋白质膨胀时进一步缩短。从色氨酸残基的荧光各向异性衰减得出的旋转相关时间表明,较长的发射波长与稍短的相关时间相关。尽管似乎发生了一些非常快的过程,也许是拉曼散射,但没有确定迹象表明色氨酸在任何构象中有任何独立运动。在酸膨胀时,完全膨胀形式下的长相关时间降至约10ns。使用碘离子或丙烯酰胺的静态猝灭实验表明,当蛋白质最大程度膨胀时,色氨酸的平均暴露程度更高。尽管在这些条件下荧光发射最大值移向较短波长。而且,较长和较短波长发射的猝灭可及性没有差异。

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