Kubota Ryou, Hiroi Taro, Ikuta Yuriki, Liu Yuchong, Hamachi Itaru
Department of Synthetic Chemistry and Biological Chemistry, Graduate School of Engineering, Kyoto University, Katsura, Nishikyo-ku, Kyoto 615-8510, Japan.
JST-ERATO, Hamachi Innovative Molecular Technology for Neuroscience, Kyoto University, Nishikyo-ku, Katsura 615-8530, Japan.
J Am Chem Soc. 2023 Aug 23;145(33):18316-18328. doi: 10.1021/jacs.3c03793. Epub 2023 Aug 10.
Coacervates, which are formed by liquid-liquid phase separation, have been extensively explored as models for synthetic cells and membraneless organelles, so their in-depth structural analysis is crucial. However, both the inner structure dynamics and formation mechanism of coacervates remain elusive. Herein, we demonstrate real-time confocal observation of a three-dimensional sponge-like network in a dipeptide-based coacervate. generation of the dipeptide allowed us to capture the emergence of the sponge-like network via unprecedented membrane folding of vesicle-shaped intermediates. We also visualized dynamic fluctuation of the network, including reversible engagement/disengagement of cross-links and a stochastic network kissing event. Photoinduced transient formation of a multiphase coacervate was achieved with a thermally responsive phase transition. Our findings expand the fundamental understanding of synthetic coacervates and provide opportunities to manipulate their physicochemical properties by engineering the inner network for potential applications in development of artificial cells and life-like material fabrication.
通过液-液相分离形成的凝聚物已被广泛用作合成细胞和无膜细胞器的模型,因此对其进行深入的结构分析至关重要。然而,凝聚物的内部结构动力学和形成机制仍然难以捉摸。在此,我们展示了对基于二肽的凝聚物中三维海绵状网络的实时共聚焦观察。二肽的生成使我们能够通过前所未有的囊泡状中间体的膜折叠来捕捉海绵状网络的出现。我们还可视化了网络的动态波动,包括交联的可逆结合/解离和随机的网络亲吻事件。通过热响应相变实现了光诱导的多相凝聚物的瞬态形成。我们的发现扩展了对合成凝聚物的基本理解,并为通过设计内部网络来操纵其物理化学性质提供了机会,以便在人工细胞开发和类生命材料制造中具有潜在应用价值。