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Computational analysis of amino acids and their sidechain analogs in crowded solutions of RNA nucleobases with implications for the mRNA–protein complementarity hypothesis

机译:RNA核碱基拥挤溶液中氨基酸及其侧链类似物的计算分析对mRNA-蛋白质互补性假设有影响

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摘要

Many critical processes in the cell involve direct binding between RNAs and proteins, making it imperative to fully understand the physicochemical principles behind such interactions at the atomistic level. Here, we use molecular dynamics simulations and 15 μs of sampling to study the behavior of amino acids and amino acid sidechain analogs in high-concentration aqueous solutions of standard RNA nucleobases. Structural and energetic analysis of simulated systems allows us to derive interaction propensity scales for different amino aciducleobase combinations. The derived scales closely match and greatly extend the available experimental data, providing a comprehensive foundation for studying RNA–protein interactions in different contexts. By using these scales, we demonstrate a statistically significant connection between nucleobase composition of human mRNA coding sequences and nucleobase interaction propensities of their cognate protein sequences. For example, pyrimidine density profiles of mRNAs match uracil-propensity profiles of their cognate proteins with a median Pearson correlation coefficient of R = −0.70. Our results provide support for the recently proposed hypotheses that mRNAs and their cognate proteins may be physicochemically complementary to each other and bind, especially if unstructured, with the complementarity level being negatively influenced by mRNA adenine content. Finally, we utilize the derived scales to refine the complementarity hypothesis and closely examine its physicochemical underpinnings.
机译:细胞中的许多关键过程都涉及RNA与蛋白质之间的直接结合,因此必须在原子水平上充分理解此类相互作用背后的物理化学原理。在这里,我们使用分子动力学模拟和15μs的采样来研究氨基酸和氨基酸侧链类似物在标准RNA核碱基的高浓度水溶液中的行为。模拟系统的结构和能量分析使我们能够推导不同氨基酸/核碱基组合的相互作用倾向量表。推导的尺度紧密匹配并大大扩展了可用的实验数据,为研究不同背景下的RNA-蛋白质相互作用提供了全面的基础。通过使用这些量表,我们证明了人类mRNA编码序列的核碱基组成与其同源蛋白质序列的核碱基相互作用倾向之间存在统计学上的显着联系。例如,mRNA的嘧啶密度分布图与其关联蛋白的尿嘧啶倾向图匹配,中位皮尔逊相关系数为R = -0.70。我们的结果为最近提出的假说提供了支持,即mRNA及其同源蛋白可能在物理化学上彼此互补,并且结合,尤其是如果是非结构化的,其互补性水平受mRNA腺嘌呤含量的负面影响。最后,我们利用推导的量表来完善互补性假设,并仔细检查其理化基础。

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