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Deconvoluting Protein (Un)folding Structural Ensembles Using X-Ray Scattering Nuclear Magnetic Resonance Spectroscopy and Molecular Dynamics Simulation

机译:使用X射线散射核磁共振波谱和分子动力学模拟对蛋白质(解折叠)折叠结构体进行卷积

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摘要

The folding and unfolding of protein domains is an apparently cooperative process, but transient intermediates have been detected in some cases. Such (un)folding intermediates are challenging to investigate structurally as they are typically not long-lived and their role in the (un)folding reaction has often been questioned. One of the most well studied (un)folding pathways is that of Drosophila melanogaster Engrailed homeodomain (EnHD): this 61-residue protein forms a three helix bundle in the native state and folds via a helical intermediate. Here we used molecular dynamics simulations to derive sample conformations of EnHD in the native, intermediate, and unfolded states and selected the relevant structural clusters by comparing to small/wide angle X-ray scattering data at four different temperatures. The results are corroborated using residual dipolar couplings determined by NMR spectroscopy. Our results agree well with the previously proposed (un)folding pathway. However, they also suggest that the fully unfolded state is present at a low fraction throughout the investigated temperature interval, and that the (un)folding intermediate is highly populated at the thermal midpoint in line with the view that this intermediate can be regarded to be the denatured state under physiological conditions. Further, the combination of ensemble structural techniques with MD allows for determination of structures and populations of multiple interconverting structures in solution.
机译:蛋白质结构域的折叠和展开是一个明显的协同过程,但在某些情况下已检测到瞬时中间体。此类(未折叠)中间体在结构上具有挑战性,因为它们通常寿命不长,并且它们在(未折叠)反应中的作用经常受到质疑。研究最深入的(未折叠)折叠路径之一是果蝇果蝇同源结构域(EnHD):这种61个残基的蛋白质在天然状态下形成三个螺旋束,并通过螺旋中间体折叠。在这里,我们使用分子动力学模拟来得出EnHD在原始,中间和未折叠状态下的样品构象,并通过与四种不同温度下的小/广角X射线散射数据进行比较来选择相关的结构簇。使用通过NMR光谱测定的残留偶极偶合来证实结果。我们的结果与先前提出的折叠路径非常吻合。但是,他们还表明,在整个研究的温度区间中,完全展开的状态所占比例很小,并且(展开)的折叠中间体在热中点处居高不下,这与该中间体被认为是在生理条件下的变性状态。此外,集成结构技术与MD的组合允许确定溶液中的结构和多个互转换结构的总体。

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