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牛血清白蛋白-金配合物的构象变化诱导的荧光。

Conformational Change-Induced Fluorescence of Bovine Serum Albumin-Gold Complexes.

机构信息

Department of Physics and Optical Science, Center for Biomedical Engineering & Science, The University of North Carolina , Charlotte, North Carolina 28223, United States.

出版信息

J Am Chem Soc. 2018 Feb 14;140(6):2265-2271. doi: 10.1021/jacs.7b11712. Epub 2018 Feb 2.

Abstract

We report new findings on the red fluorescent (λ = 640 nm) bovine serum albumin (BSA)-gold (Au) compound initially described by Xie et al. (J. Am. Chem. Soc. 2009, 131, 888-889) as Au nanoclusters. The BSA-Au compounds were further reducible to yield nanoparticles, suggesting that these compounds were BSA-cationic Au complexes. We examined the correlations between BSA conformations (pH-induced as well as denatured) and the resulting fluorescence of BSA-Au complexes, to understand the possible cationic Au binding sites. The red fluorescence of the BSA-Au complex was associated with a particular isoform of BSA, the aged form (pH > 10) of the five pH-dependent BSA conformations, while the other conformations, expanded (pH < 2.7), fast (2.7 < pH < 4.3), normal (4.3 < pH < 8), and basic (8 < pH < 10) did not result in red fluorescence. There could be internal energy transfer mechanisms to produce red fluorescence, deduced from excitation-emission map measurements. The ensemble minimum number of Au(III) per BSA to yield red fluorescence was <7. We illustrate the presence of multiple specific Au binding sites in BSA, and present an interpretation of the fluorescence of the BSA-Au complex, alternative to a single-site nucleation of a neutral Au nanocluster.

摘要

我们报告了谢等人最初描述的红色荧光(λ=640nm)牛血清白蛋白(BSA)-金(Au)化合物的新发现。这些 BSA-Au 化合物可以进一步还原为纳米颗粒,表明这些化合物是 BSA-阳离子 Au 配合物。我们研究了 BSA 构象(pH 诱导和变性)与 BSA-Au 配合物产生的荧光之间的相关性,以了解可能的阳离子 Au 结合位点。BSA-Au 配合物的红色荧光与 BSA 的特定同工型相关,即 pH 值依赖性 BSA 构象的五种形式中的老化形式(pH > 10),而其他构象,如展开(pH < 2.7)、快速(2.7 < pH < 4.3)、正常(4.3 < pH < 8)和碱性(8 < pH < 10),则不会产生红色荧光。从激发-发射图谱测量中推断,可能存在内部能量转移机制以产生红色荧光。产生红色荧光的 BSA 中每个 Au(III)的最小集合数<7。我们说明了 BSA 中存在多个特定的 Au 结合位点,并对 BSA-Au 配合物的荧光进行了解释,这与中性 Au 纳米簇的单一位点成核不同。

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