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Intermolecular correlations are necessary to explain diffuse scattering from protein crystals

机译:分子间的相关性对于解释蛋白质晶体的散射是必要的

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摘要

Conformational changes drive protein function, including catalysis, allostery and signaling. X-ray diffuse scattering from protein crystals has frequently been cited as a probe of these correlated motions, with significant potential to advance our understanding of biological dynamics. However, recent work has challenged this prevailing view, suggesting instead that diffuse scattering primarily originates from rigid-body motions and could therefore be applied to improve structure determination. To investigate the nature of the disorder giving rise to diffuse scattering, and thus the potential applications of this signal, a diverse repertoire of disorder models was assessed for its ability to reproduce the diffuse signal reconstructed from three protein crystals. This comparison revealed that multiple models of intramolecular conformational dynamics, including ensemble models inferred from the Bragg data, could not explain the signal. Models of rigid-body or short-range liquid-like motions, in which dynamics are confined to the biological unit, showed modest agreement with the diffuse maps, but were unable to reproduce experimental features indicative of long-range correlations. Extending a model of liquid-like motions to include disorder across neighboring proteins in the crystal significantly improved agreement with all three systems and highlighted the contribution of intermolecular correlations to the observed signal. These findings anticipate a need to account for intermolecular disorder in order to advance the interpretation of diffuse scattering to either extract biological motions or aid structural inference.
机译:构象变化驱动蛋白质功能,包括催化,变构和信号传导。来自蛋白质晶体的X射线漫射散射经常被作为这些相关运动的探针,具有极大的潜力,可以增进我们对生物学动力学的理解。但是,最近的工作挑战了这种普遍的观点,相反地表明弥散散射主要源于刚体运动,因此可以用于改善结构确定性。为了研究引起弥散散射的疾病的性质,从而研究该信号的潜在应用,评估了各种疾病模型库,其再现由三个蛋白质晶体重建的弥散信号的能力。这种比较表明,分子内构象动力学的多种模型,包括根据布拉格数据推断出的整体模型,不能解释该信号。动力学仅限于生物单位的刚体或短程液体运动模型与扩散图显示出适度的一致性,但是无法重现表明长期相关性的实验特征。扩展类似液体的运动模型以包含晶体中相邻蛋白质的无序现象,可以显着改善与所有三个系统的一致性,并突出显示了分子间相关性对观察到的信号的贡献。这些发现预期需要考虑分子间的紊乱,以促进对弥散散射的解释以提取生物运动或帮助结构推断。

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