Wang Tong, Hu Qingyue, Fronhofer Scout, Pollack Lois
School of Applied and Engineering Physics, Cornell University, Ithaca, NY 14853, USA.
bioRxiv. 2025 Feb 8:2025.02.06.636987. doi: 10.1101/2025.02.06.636987.
Ribonucleoprotein (RNP) condensates have distinct physiological and pathological significance, but the structure of RNA within them is not well understood. Using contrast-variation solution X-ray scattering, which discerns only the RNA structures within protein-RNA complexes, alongside ensemble-based structural modeling we characterize the conformational changes of flexible poly-A, poly-U and poly-C single stranded RNA as it interacts with polybasic peptides, eventually forming condensed coacervate mixtures. At high salt concentrations, where macromolecular association is weak, we probe association events that precede the formation of liquid-like droplets. Structural changes occur in RNA that reflect charge screening by the peptides as well as interactions of the bases with basic residues. At lower salt concentrations, where association is enhanced, poly-A RNA within phase separated RNP mixtures exhibit a broad scattering peak, suggesting subtle ordering. Coarse-grained molecular dynamics simulations are used to elucidate the nucleotide-specific dynamics within RNP condensates. While adenine-rich condensates behave like stable semidilute solutions, uracil-rich RNA condensates appear to be compositionally fluctuating. This approach helps understand how RNA sequence contributes to the molecular grammar of RNA-protein phase separation.
核糖核蛋白(RNP)凝聚物具有独特的生理和病理意义,但其内部RNA的结构尚未得到很好的理解。使用仅能识别蛋白质-RNA复合物中RNA结构的对比变化溶液X射线散射技术,结合基于系综的结构建模,我们表征了柔性聚腺苷酸、聚尿苷酸和聚胞苷酸单链RNA与多碱性肽相互作用时的构象变化,最终形成凝聚的凝聚层混合物。在高盐浓度下,大分子结合较弱,我们探测了类液滴形成之前的结合事件。RNA中发生的结构变化反映了肽对电荷的屏蔽以及碱基与碱性残基的相互作用。在低盐浓度下,结合增强,相分离的RNP混合物中的聚腺苷酸RNA呈现出一个宽散射峰,表明存在细微的有序排列。粗粒度分子动力学模拟用于阐明RNP凝聚物中核苷酸特异性动力学。富含腺嘌呤的凝聚物表现得像稳定的半稀溶液,而富含尿嘧啶RNA的凝聚物在组成上似乎存在波动。这种方法有助于理解RNA序列如何对RNA-蛋白质相分离的分子语法产生影响。