化学
内在无序蛋白质
介观物理学
化学物理
中子散射
相(物质)
结构因子
功能(生物学)
生物物理学
蛋白质动力学
蛋白质折叠
折叠(DSP实现)
分子动力学
纳米颗粒
小角中子散射
蛋白质-蛋白质相互作用
动态光散射
蛋白质结构域
蛋白质聚集
蛋白质结构
生物分子
静电
分子生物物理学
动态结构因子
布朗动力学
能源景观
纳米技术
结构生物学
水动力半径
聚合物
自组装
静电学
散射
作者
Brian R. Carrick,Laura Stingaciu,Bradley D. Olsen
摘要
-terminal domain of Galectin-3, an extracellular lectin responsible for facilitating liquid-liquid phase separation on the cellular surface, in both dilute and condensed phases. Dilute solutions contain isolated protein chains in equilibrium with mesoscopic clusters, whereas the condensed phase adopts a bicontinuous, microemulsion-like morphology. The dilute phase behavior is quantitatively described by coarse-grained polymer models from soft-matter physics, demonstrating their predictive power for complex biological proteins. At elevated concentrations, the proteins self-assemble akin to block copolymers, microphase separating through the aggregation of hydrophobic domains along the protein contour. The resulting condensate remains fluid-like despite a 25-fold increase in concentration; its internal hydrodynamics slow by only a factor of 3 relative to dilute protein chains. These results provide a molecular-level framework for how disordered proteins achieve both the structural complexity and dynamic fluidity of biomolecular condensates.
科研通智能强力驱动
Strongly Powered by AbleSci AI