三肽
凝聚
化学
串联
组合化学
肽
催化作用
功能(生物学)
纳米技术
生物分子
细胞器
分子
生物正交化学
相(物质)
微型反应器
作者
Hao Han,Siyu Song,Yì Wáng,Tsvetomir Ivanov,Dongdong Zhou,Hao Su,Katharina Landfester,Shoupeng Cao
标识
DOI:10.1002/anie.202517620
摘要
Biomolecular condensates formed via liquid-liquid phase separation function as dynamic organelles that are vital to regulating cellular activities. Peptide-based coacervates have emerged as appealing candidates to resemble key properties of biomolecular condensates. However, their application as adaptive organelles has been hindered by structural complexity and limited control over phase-separation. Here, we present short tripeptide coacervates with tunable phase-separation behaviors governed by composition and peptide sequence, significantly reducing molecular complexity. These tripeptide condensates exhibit enzyme-regulated phase-separation, closely mimicking the dynamic nature of biomolecular condensates. A key attractive feature of the tripeptide coacervates is their capability to sequester both hydrophobic active species and hydrophilic enzymes. This unique property enables the execution of confined tandem reactions in aqueous conditions. When incorporated into membrane-bound artificial cells, this tripeptide coacervates serve as adaptive sub-organelles, orchestrating compartmentalized catalytic cascades. This work highlights the potential of minimalistic peptide systems as functional microreactors with biomimetic and catalytic capabilities.
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