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阴离子胶束中荧光探针结构波动与超快水合动力学耦合的直接观测

Direct Observation of Coupling between Structural Fluctuation and Ultrafast Hydration Dynamics of Fluorescent Probes in Anionic Micelles.

作者信息

Choudhury Susobhan, Mondal Prasanna Kumar, Sharma V K, Mitra S, Sakai V Garcia, Mukhopadhyay R, Pal Samir Kumar

机构信息

Department of Chemical, Biological & Macromolecular Sciences, S. N. Bose National Centre for Basic Sciences , Block JD, Sector III, Salt Lake, Kolkata 700 098, India.

Solid State Physics Division, Bhabha Atomic Research Centre , Mumbai 400085, India.

出版信息

J Phys Chem B. 2015 Aug 27;119(34):10849-57. doi: 10.1021/jp511899q. Epub 2015 Apr 24.

Abstract

The coupling of structural fluctuation and the dynamics of associated water molecules of biological macromolecules is vital for various biological activities. Although a number of molecular dynamics (MD) studies on proteins/DNA predicted the importance of such coupling, experimental evidence of variation of hydration dynamics with controlled structural fluctuation even in model macromolecule is sparse and raised controversies in the contemporary literature. Here, we have investigated dynamics of hydration at the surfaces of two similar anionic micelles sodium dodecyl sulfate (SDS) and sodium dodecylbenzenesulfonate (SDBS) as model macromolecules using coumarin 500 (C500) as spectroscopic probe with femtosecond to picosecond time resolution up to 20 ns time window. The constituting surfactants SDS and SDBS are structurally similar except one benzene moiety in the SDBS may offer additional rigidity to the SDBS micelles through π-stacking and added bulkiness. The structural integrity of the micelles in the aqueous medium is confirmed in dynamic light scattering (DLS) studies. A variety of studies including polarization gated fluorescence spectroscopy and quasielastic neutron scattering (QENS) have been used to confirm differential structural fluctuation of SDS and SDBS micelles. We have also employed femtosecond-resolved Förster resonance energy transfer (FRET) in order to study binding of a cationic organic ligand ethidium bromide (EtBr) salt at the micellar surfaces. The distance distribution of the donor (C500)-acceptor (EtBr) in the micellar media reveals the manifestation of the structural flexibility of the micelles. Our studies on dynamical coupling of the structural flexibility with surface hydration in the nanoscopic micellar media may find the relevance in the "master-slave" type water dynamics in biologically relevant macromolecules.

摘要

生物大分子的结构波动与相关水分子动力学的耦合对于各种生物活动至关重要。尽管许多关于蛋白质/DNA的分子动力学(MD)研究预测了这种耦合的重要性,但即使在模型大分子中,关于水合动力学随可控结构波动而变化的实验证据也很稀少,并在当代文献中引发了争议。在此,我们以十二烷基硫酸钠(SDS)和十二烷基苯磺酸钠(SDBS)这两种相似的阴离子胶束作为模型大分子,使用香豆素500(C500)作为光谱探针,在高达20 ns的时间窗口内以飞秒到皮秒的时间分辨率研究了其表面的水合动力学。构成表面活性剂的SDS和SDBS在结构上相似,只是SDBS中的一个苯部分可能通过π堆积为SDBS胶束提供额外的刚性并增加体积。通过动态光散射(DLS)研究证实了胶束在水介质中的结构完整性。包括偏振门控荧光光谱和准弹性中子散射(QENS)在内的各种研究已被用于证实SDS和SDBS胶束的不同结构波动。我们还采用了飞秒分辨的Förster共振能量转移(FRET)来研究阳离子有机配体溴化乙锭(EtBr)盐在胶束表面的结合。胶束介质中供体(C500) - 受体(EtBr)的距离分布揭示了胶束结构灵活性的表现。我们对纳米级胶束介质中结构灵活性与表面水合的动态耦合的研究可能与生物相关大分子中“主 - 从”型水动力学相关。

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