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Spontaneous Adjustment Mechanism in an RNA-Binding Protein: Cooperation Between Energetic Stabilization and Target Search Enhancement

机译:RNA结合蛋白的自发调节机制:能量稳定和目标搜索增强之间的合作。

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摘要

We propose a novel concept associated with the relationship between structure and function in biomolecular systems. We performed a 75 nanoseconds molecular dynamics (MD) simulation for an RNA-binding protein, neurooncological ventral antigen (NOVA), and examined its physico-chemical properties. NOVA dissociated from the NOVARNA complex showed a large conformational change: formation of intra-molecular hydrogen bonds between the Cterminal region and the loop structure located at the middle of amino acid sequence. The free energy analysis suggests that the deformed structure is more stabilized in macromolecular crowding environment where the dielectric constant is smaller than 5. The solvent accessible surface area (SASA) analysis indicates that NOVA enhances the efficiency of association with RNA by changing the relative SASA for the target sequence in RNA molecules. Based on the obtained results, we propose a novel concept of spontaneous adjustment mechanism to explain the structural and energetic changes observed for NOVA in the free state.
机译:我们提出了一种与生物分子系统中结构与功能之间的关系有关的新颖概念。我们对RNA结合蛋白神经肿瘤腹侧抗原(NOVA)进行了75纳秒的分子动力学(MD)模拟,并检查了其理化性质。从NOVARNA复合物中解离的NOVA显示出较大的构象变化:在C末端区域和位于氨基酸序列中间的环结构之间形成了分子内氢键。自由能分析表明,在介电常数小于5的大分子拥挤环境中,变形结构更稳定。溶剂可及表面积(SASA)分析表明,NOVA通过改变相对SASA来提高与RNA缔合的效率。 RNA分子中的靶序列。基于获得的结果,我们提出了自发调节机制的新概念,以解释在自由状态下NOVA观察到的结构和能量变化。

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