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硫黄素 T 与淀粉样纤维的相互作用:结合染料的荧光量子产率。

Interaction of thioflavin T with amyloid fibrils: fluorescence quantum yield of bound dye.

机构信息

Laboratory of Structural Dynamics, Stability and Folding of Proteins of the Institute of Cytology, Russian Academy of Sciences, St. Petersburg 194064, Russia.

出版信息

J Phys Chem B. 2012 Mar 1;116(8):2538-44. doi: 10.1021/jp2083055. Epub 2012 Feb 15.

DOI:10.1021/jp2083055
PMID:22268449
Abstract

Benzothiazole dye thioflavin T (ThT) is a sensitive probe for amyloid fibril detection. The ThT probing is based on its unique ability to form highly fluorescent complexes with amyloid and amyloid-like fibrils. In this work we propose an approach of ThT fluorescence quantum yield determination based on two key points: (1) fluorescence intensity (I) presentation as a multiple of two factors one of which the correcting factor (W) depends only on total optical density of solution, while the other is a multiple of optical density and fluorescence quantum yield of ThT bound to amyloid fibrils or their sum in the case of several binding modes (I = W Σ D(bi)q(i)) and (2) sample and reference solutions preparation by equilibrium microdialysis. The last allows to determine the values of optical densities of free (D(f)) and bound (D(b) = ΣD(bi)) dye. Thereafter, fluorescence quantum yield (q(bi)) of ThT bound to sites of i binding mode can be determined by multiple linear regression. The fluorescence quantum yield of ThT molecules bound to the sites of two binding modes of lysozyme amyloid fibrils with high and low binding constants (7.5 × 10(6) and 5.6 × 10(4) M(-1)) was found equal to 0.44 and 5 × 10(-4), respectively. The higher value of fluorescence quantum yield is larger than that for ThT in rigid isotropic solution (0.28), whereas the lower value is comparable to that of ThT in aqueous solution (1 × 10(-4)). At the same time absorption spectra of ThT bound to these modes coincide (450 nm) and are red-shifted in comparison with that of free ThT in aqueous solution (412 nm).

摘要

苯并噻唑染料硫黄素 T(ThT)是一种灵敏的淀粉样纤维检测探针。ThT 探测基于其与淀粉样纤维和类似淀粉样纤维形成高度荧光复合物的独特能力。在这项工作中,我们提出了一种基于两个关键点的 ThT 荧光量子产率测定方法:(1)荧光强度(I)表示为两个因子的倍数,其中一个校正因子(W)仅取决于溶液的总光密度,而另一个是光密度和与淀粉样纤维结合的 ThT 的荧光量子产率的倍数(I = WΣD(bi)q(i))和(2)通过平衡微透析制备样品和参比溶液。最后,可以通过多元线性回归确定游离(D(f))和结合(D(b)=ΣD(bi))染料的光密度值。此后,可以通过多元线性回归确定与 i 结合模式的位点结合的 ThT 分子的荧光量子产率(q(bi))。溶菌酶淀粉样纤维的两种结合模式的 ThT 分子的荧光量子产率(高结合常数(7.5×10(6)M(-1))和低结合常数(5.6×10(4)M(-1)))分别为 0.44 和 5×10(-4)。荧光量子产率的较高值大于刚性各向同性溶液中 ThT 的荧光量子产率(0.28),而较低值与水溶液中 ThT 的荧光量子产率(1×10(-4))相当。同时,与游离 ThT 在水溶液中(412nm)相比,与这些模式结合的 ThT 的吸收光谱(450nm)发生红移并重合。

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