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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Locating the nucleation sites for protein encapsulated gold nanoclusters: a molecular dynamics and fluorescence study
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Locating the nucleation sites for protein encapsulated gold nanoclusters: a molecular dynamics and fluorescence study

机译:蛋白质包封的金纳米团簇的成核位置定位:分子动力学和荧光研究

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摘要

Fluorescent gold nanoclusters encapsulated by proteins have attracted considerable attention in recent years for their unique properties as new fluorescence probes for biological sensing and imaging. However, fundamental questions, such as the nucleation sites of gold nanoclusters within proteins and the fluorescence mechanism remain unsolved. Here we present a study of the location of gold nanoclusters within bovine serum albumin (BSA) combining both fully atomistic molecular dynamic (MD) simulations and fluorescence spectroscopic studies. The MD simulations show gold clusters growing close to a number of cysteine sites across all three domains of BSA, although just two major sites in domains IIB and IA were found to accommodate large clusters comprising more than 12 atoms. The dependence of the fluorescence on pH is found to be compatible with possible nucleation sites in domains IIB and IA. Furthermore, the energy transfer between tryptophan and gold nanoclusters reveals a separation of 29.7 angstrom, further indicating that gold nanoclusters were most likely located in the major nucleation site in domain IIB. The disclosure of the precise location of the gold nanoclusters and their surrounding amino acid residues should help better understanding of their fluorescence mechanism and aid their optimization as fluorescent nanoprobes.
机译:蛋白质包裹的荧光金纳米簇由于其独特的特性作为生物传感和成像的新型荧光探针,近年来受到了相当大的关注。但是,诸如蛋白质内的金纳米簇的成核位点和荧光机理等基本问题仍未解决。在这里,我们结合完全原子分子动力学(MD)模拟和荧光光谱研究,对牛血清白蛋白(BSA)中金纳米簇的位置进行了研究。 MD模拟显示,金簇在BSA的所有三个域中都靠近多个半胱氨酸位点生长,尽管发现域IIB和IA中只有两个主要位点可容纳包含12个以上原子的大簇。发现荧光对pH的依赖性与结构域IIB和IA中可能的成核位点兼容。此外,色氨酸和金纳米团簇之间的能量转移揭示了29.7埃的分离,进一步表明金纳米团簇最可能位于IIB区的主要成核位置。金纳米团簇及其周围氨基酸残基的精确位置的公开应有助于更好地理解其荧光机理,并有助于将其优化为荧光纳米探针。

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