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Fluorescence correlation spectroscopy shows that monomeric polyglutamine molecules form collapsed structures in aqueous solutions

机译:荧光相关光谱显示单体聚谷氨酰胺分子在水溶液中形成塌陷结构

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We have used fluorescence correlation spectroscopy measurements to quantify the hydrodynamic sizes of monomeric polyglutamine as a function of chain length (N) by measuring the scaling of translational diffusion times (T-D) for the peptide series (Gly)(Gln)(N)-Cys-LyS(2) in aqueous solution. We find that TD scales with N as ToNv and therefore In(T-D) = In(T-o) + vIn(N). The values for v and In(T-o) are 0.32 +/- 0.02 and 3.04 +/- 0.08, respectively. Based on these observations, we conclude that water is a polymeric poor solvent for polyglutamine. Previous studies have shown that monomeric polyglutamine is intrinsically disordered. These observations combined with our fluorescence correlation spectroscopy data suggest that the ensemble for monomeric polyglutamine is made up of a heterogeneous collection of collapsed structures. This result is striking because the preference for collapsed structures arises despite the absence of residues deemed to be hydrophobic in the sequence constructs studied. Working under the assumption that the driving forces for collapse are similar to those for aggregation, we discuss the implications of our results for the thermodynamics and kinetics of polyglutamine aggregation, a process that has been implicated in the molecular mechanism of Huntington's disease.
机译:我们已经使用荧光相关光谱法测量通过测量肽系列(Gly)(Gln)(N)-Cys的平移扩散时间(TD)的比例来量化单体聚谷氨酰胺的流体动力学大小与链长(N)的关系-LyS(2)在水溶液中。我们发现TD随N缩放为ToNv,因此In(T-D)= In(T-o)+ vIn(N)。 v和In(T-o)的值分别为0.32 +/- 0.02和3.04 +/- 0.08。基于这些观察,我们得出结论,水是聚谷氨酰胺的聚合不良溶剂。先前的研究表明单体聚谷氨酰胺本质上是无序的。这些观察结果与我们的荧光相关光谱数据相结合,表明单体聚谷氨酰胺的整体由塌陷结构的异质集合组成。该结果是惊人的,因为尽管在所研究的序列构建体中不存在被认为是疏水性的残基,但仍倾向于折叠结构。在假设崩溃的驱动力与聚集的驱动力相似的前提下,我们讨论了结果对聚谷氨酰胺聚集的热力学和动力学的影响,该过程与亨廷顿舞蹈病的分子机制有关。

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