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HEXIM1 在核内的扩散受其与 7SK 和 P-TEFb 的相互作用调节。

HEXIM1 Diffusion in the Nucleus Is Regulated by Its Interactions with Both 7SK and P-TEFb.

机构信息

University of Lille, CNRS, UMR 8523, PhLAM Laboratoire de Physique des Lasers, Atomes et Molécules, Lille, France.

University of Lille, CNRS, UMR 8523, PhLAM Laboratoire de Physique des Lasers, Atomes et Molécules, Lille, France.

出版信息

Biophys J. 2019 Nov 5;117(9):1615-1625. doi: 10.1016/j.bpj.2019.09.019. Epub 2019 Sep 20.

Abstract

How nuclear proteins diffuse and find their targets remains a key question in the transcription field. Dynamic proteins in the nucleus are classically subdiffusive and undergo anomalous diffusion, yet the underlying physical mechanisms are still debated. In this study, we explore the contribution of interactions to the generation of anomalous diffusion by the means of fluorescence spectroscopy and simulation. Using interaction-deficient mutants, our study indicates that HEXIM1 interactions with both 7SK RNA and positive transcription elongation factor b are critical for HEXIM1 subdiffusion and thus provides evidence of the effects of protein-RNA interaction on molecular diffusion. Numerical simulations allowed us to establish that the proportions of distinct oligomeric HEXIM1 subpopulations define the apparent anomaly parameter of the whole population. Slight changes in the proportions of these oligomers can lead to significant shifts in the diffusive features and recapitulate the modifications observed in cells with the various interaction-deficient mutants. By combining simulations and experiments, our work opens new prospects in which the anomaly α coefficient in diffusion becomes a helpful tool to infer alterations in molecular interactions.

摘要

核蛋白如何扩散并找到其靶标仍然是转录领域的一个关键问题。核内的动态蛋白通常是亚扩散的,并经历异常扩散,但潜在的物理机制仍存在争议。在这项研究中,我们通过荧光光谱和模拟方法来探索相互作用对异常扩散产生的贡献。使用缺乏相互作用的突变体,我们的研究表明,HEXIM1 与 7SK RNA 和正转录延伸因子 b 的相互作用对于 HEXIM1 的亚扩散至关重要,从而为蛋白质-RNA 相互作用对分子扩散的影响提供了证据。数值模拟使我们能够确定不同寡聚体 HEXIM1 亚群的比例决定了整个群体的表观异常参数。这些寡聚体比例的微小变化可能导致扩散特征的显著变化,并再现各种缺乏相互作用的突变体中观察到的修饰。通过结合模拟和实验,我们的工作为扩散中的异常 α 系数成为推断分子相互作用变化的有用工具开辟了新的前景。

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