凝聚
化学
构象熵
熵(时间箭头)
冷凝
化学物理
动力学
聚合物
动态光散射
构象变化
热力学
水溶液
分子动力学
肽
光散射
蛋白质结构
功能(生物学)
阳离子聚合
非平衡态热力学
组态熵
结晶学
静电
散射
现象学模型
作者
Tommaso Inzani,Giovanni Nava,Marco Buscaglia,Andrea Soranno,Alessandro Gori,Greta Bergamaschi,Samir Suweis,Amos Maritan,Tommaso Bellini
标识
DOI:10.1073/pnas.2520181123
摘要
Understanding the mechanisms leading to complex coacervation is a fundamental challenge in biomolecular sciences. Here, we explored the condensation transition and pretransitional behavior of an archetypal system consisting of polyuridylic acid chains (PolyU) and short cationic peptides in buffered aqueous solutions. By combining static and dynamic light scattering with confocal microscopy, we determined the location of the transition and the partitioning of PolyU and peptides between the coexisting phases as a function of the total peptides/PolyU ratio. We find that upon adding peptides in the system, the size of PolyU coils in the single-phase region is progressively reduced by peptide-mediated intrachain bonds. Such conformational constraints become less severe in the dense phase, where part of the bonds become interchain as indicated by the sticky-reptation-type kinetics observed by dynamic light scattering. We propose a phenomenological model in which we include the loss in PolyU conformational entropy induced by peptide decoration and show that this quantity is large enough to be the main driver of the condensation transition. The model well reproduces the observed molecular partitioning between phases. We argue that the role of coil conformational relaxation, here demonstrated for a specific system, might be of general relevance in complex coacervation.
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