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Conformations of a Metastable SH3 Domain Characterized by smFRET and an Excluded-Volume Polymer Model

机译:smFRET和排除体积聚合物模型表征的亚稳态SH3结构域的构象

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摘要

Conformational states of the metastable drkN SH3 domain were characterized using single-molecule fluorescence techniques. Under nondenaturing conditions, two Förster resonance energy transfer (FRET) populations were observed that corresponded to a folded and an unfolded state. FRET-estimated radii of gyration and hydrodynamic radii estimated by fluorescence correlation spectroscopy of the two coexisting conformations are in agreement with previous ensemble x-ray scattering and NMR measurements. Surprisingly, when exposed to high concentrations of urea and GdmCl denaturants, the protein still exhibits two distinct FRET populations. The dominant conformation is expanded, showing a low FRET efficiency, consistent with the expected behavior of a random chain with excluded volume. However, approximately one-third of the drkN SH3 conformations showed high, nearly 100%, FRET efficiency, which is shown to correspond to denaturation-induced looped conformations that remain stable on a timescale of at least 100 μs. These loops may contain interconverting conformations that are more globally collapsed, hairpin-like, or circular, giving rise to the observed heterogeneous broadening of this population. Although the underlying mechanism of chain looping remains elusive, FRET experiments in formamide and dimethyl sulfoxide suggest that interactions between hydrophobic groups in the distal regions may play a significant role in the formation of the looped state.
机译:使用单分子荧光技术表征了亚稳态drkN SH3域的构象状态。在非变性条件下,观察到两个Förster共振能量转移(FRET)群体,分别对应于折叠和未折叠状态。通过两个相关构象的荧光相关光谱法估计的FRET估计的回转半径和流体力学半径与先前的整体X射线散射和NMR测量一致。出人意料的是,当暴露于高浓度的尿素和GdmCl变性剂中时,该蛋白质仍显示出两个截然不同的FRET群体。显性构象被扩展,显示出低的FRET效率,与排除体积的随机链的预期行为一致。但是,约有三分之一的drkN SH3构象显示出高的,近100%的FRET效率,这表明与变性诱导的环状构象相对应,该构象在至少100μs的时间尺度上保持稳定。这些环可能包含相互转换的构象,这些构象更普遍地塌陷,呈发夹状或圆形,从而引起了该种群的异质性扩大。尽管链环的基本机制仍然难以捉摸,但在甲酰胺和二甲基亚砜中进行的FRET实验表明,远端区域中疏水基团之间的相互作用可能在环化状态的形成中起重要作用。

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