Construction of coacervate-in-coacervate multi-compartment protocells for spatial organization of enzymatic reactions

被引:84
作者
Chen, Yufeng [1 ]
Yuan, Min [1 ]
Zhang, Yanwen [1 ]
Liu, Songyang [1 ]
Yang, Xiaohai [1 ]
Wang, Kemin [1 ]
Liu, Jianbo [1 ]
机构
[1] Hunan Univ, Key Lab Bionanotechnol & Mol Engn Hunan Prov, Coll Chem & Chem Engn, State Key Lab Chemo Biosensing & Chemometr, Changsha 410082, Hunan, Peoples R China
关键词
DROPLETS; COMPARTMENTS; CAPSOSOMES; GRANULES; MODEL; DRUG;
D O I
10.1039/d0sc03849k
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Coacervate microdroplets, formedvialiquid-liquid phase separation, have been extensively explored as a compartment model for the construction of artificial cells or organelles. In this study, coacervate-in-coacervate multi-compartment protocells were constructed using four polyelectrolytes, in which carboxymethyl-dextran and diethylaminoethyl-dextran were deposited on the surface of as-prepared polydiallyldimethyl ammonium/deoxyribonucleic acid coacervate microdroplets through layer-by-layer assembly. The resulting multi-compartment protocells were composed from two immiscible coacervate phases with distinct physical and chemical properties. Molecule transport experiments indicated that small molecules could diffuse between two coacervate phases and that macromolecular enzymes could be retained. Furthermore, a competitive cascade enzymatic reaction of glucose oxidase/horseradish peroxidase-catalase was performed in the multi-compartment protocells. The different enzyme organization and productions of H(2)O(2)led to a distinct polymerization of dopamine. The spatial organization of different enzymes in immiscible coacervate phases, the distinct reaction fluxes between coacervate phases, and the enzymatic cascade network led to distinguishable signal generation and product outputs. The development of this multi-compartment structure could pave the way toward the spatial organization of multi-enzyme cascades and provide new ideas for the design of organelle-containing artificial cells.
引用
收藏
页码:8617 / 8625
页数:9
相关论文
共 47 条
  • [1] Aumiller WM, 2016, NAT CHEM, V8, P129, DOI [10.1038/NCHEM.2414, 10.1038/nchem.2414]
  • [2] Multi-compartment encapsulation of communicating droplets and droplet networks in hydrogel as a model for artificial cells
    Bayoumi, Mariam
    Bayley, Hagan
    Maglia, Giovanni
    Sapra, K. Tanuj
    [J]. SCIENTIFIC REPORTS, 2017, 7
  • [3] Multicompartment Polymer Vesicles with Artificial Organelles for Signal-Triggered Cascade Reactions Including Cytoskeleton Formation
    Belluati, Andrea
    Thamboo, Sagana
    Najer, Adrian
    Maffeis, Viviana
    von Planta, Claudio
    Craciun, Ioana
    Palivan, Cornelia G.
    Meier, Wolfgang
    [J]. ADVANCED FUNCTIONAL MATERIALS, 2020, 30 (32)
  • [4] The multifunctional nucleolus
    Boisvert, Francois-Michel
    van Koningsbruggen, Silvana
    Navascues, Joaquin
    Lamond, Angus I.
    [J]. NATURE REVIEWS MOLECULAR CELL BIOLOGY, 2007, 8 (07) : 574 - 585
  • [5] Spatial Positioning and Chemical Coupling in Coacervate-in-Proteinosome Protocells
    Booth, Richard
    Qiao, Yan
    Li, Mei
    Mann, Stephen
    [J]. ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2019, 58 (27) : 9120 - 9124
  • [6] Germline P Granules Are Liquid Droplets That Localize by Controlled Dissolution/Condensation
    Brangwynne, Clifford P.
    Eckmann, Christian R.
    Courson, David S.
    Rybarska, Agata
    Hoege, Carsten
    Gharakhani, Joebin
    Juelicher, Frank
    Hyman, Anthony A.
    [J]. SCIENCE, 2009, 324 (5935) : 1729 - 1732
  • [7] Artificial Cells: Synthetic Compartments with Life-like Functionality and Adaptivity
    Buddingh, Bastiaan C.
    van Hest, Jan C. M.
    [J]. ACCOUNTS OF CHEMICAL RESEARCH, 2017, 50 (04) : 769 - 777
  • [8] Multicompartment Particle Assemblies for Bioinspired Encapsulated Reactions
    Chandrawati, Rona
    van Koeverden, Martin P.
    Lomas, Hannah
    Caruso, Frank
    [J]. JOURNAL OF PHYSICAL CHEMISTRY LETTERS, 2011, 2 (20): : 2639 - 2649
  • [9] Horseradish peroxidase-catalyzed polymerization of L-DOPA for mono-/bi-enzyme immobilization and amperometric biosensing of H2O2 and uric acid
    Dai, Mengzhen
    Huang, Ting
    Chao, Long
    Xie, Qingji
    Tan, Yueming
    Chen, Chao
    Meng, Wenhua
    [J]. TALANTA, 2016, 149 : 117 - 123
  • [10] Macromolecularly Crowded Protocells from Reversibly Shrinking Monodisperse Liposomes
    Deng, Nan-Nan
    Vibhute, Mahesh A.
    Zheng, Lifei
    Zhao, Hui
    Yelleswarapu, Maaruthy
    Huck, Wilhelm T. S.
    [J]. JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2018, 140 (24) : 7399 - 7402