核酸
膜
相(物质)
生物物理学
化学
细胞器
化学物理
热的
材料科学
化学工程
膜蛋白
生物系统
结晶学
细胞膜
热力学
核糖核酸
等离子体
相变
细胞
蛋白质结构
作者
Yongxu Han,Kai Cheng,Kongqi Chen,Zhiyi Xu,Haibo Jiang,Bin Zeng,Manjia Li,Fei Sun,Xiangze Zeng,Sijie Chen,Jiang Xia
出处
期刊:Aggregate
[Wiley]
日期:2026-03-28
卷期号:7 (4)
摘要
ABSTRACT Many of the membraneless organelles inside cells are multiphasic condensates with complex structural organizations driven by the demixing of phase‐separating proteins. Tailoring the structures of multiphasic condensates by controlling their demixing states is a challenge. Here, we employ two proteins with distinctly different features, including thermal responsiveness, hydrophobicity, and charges: a positively charged RGGRGG protein, which forms phase‐separated condensates below an upper critical solution temperature, and a protein based on an elastin‐like polypeptide, which forms condensates above a lower critical solution temperature. These two proteins demix to form multiphasic condensates with nested and core‐shell structures under variable conditions, which can be tailored by altering the physical and chemical environments. The demixed multiphasic condensates can also be constructed inside Escherichia coli cells, recapitulating the properties of membraneless organelles. We also show that nucleic acids preferentially enrich in the positively charged segment of the multiphasic condensates. Lastly, multiphasic condensates can deliver nucleic acids across the plasma membrane into mammalian cells, enabling cell transfection.
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