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Programmable Enzymatic Reaction Network in Artificial Cell-Like Polymersomes

Title of paper
Programmable Enzymatic Reaction Network in Artificial Cell-Like Polymersomes
Author
[이효민 교수 연구실] 인공 세포 모사 폴리머좀 내 프로그래밍 가능한 효소 반응 네트워크 구현
Publication in journal
Advanced Science
Publication date
20240416

 

 

 

[Abstract]

 

The ability to precisely control in vitro enzymatic reactions in synthetic cells plays a crucial role in the bottom-up design of artificial cell models that can recapitulate the key cellular features and functions such as metabolism. However, integration of enzymatic reactions has been limited to bulk or microfluidic emulsions without a membrane, lacking the ability to design more sophisticated higher-order artificial cell communities for reconstituting spatiotemporal biological information at multiple length scales. Herein, droplet microfluidics is utilized to synthesize artificial cell-like polymersomes with distinct molecular permeability for spatiotemporal control of enzymatic reactions driven by external signals and fuels. The presence of a competing reverse enzymatic reaction that depletes the active substrates is shown to enable demonstration of fuel-driven formation of sub-microcompartments within polymersomes as well as realization of out-of-equilibrium systems. In addition, the different permeability characteristics of polymersome membranes are exploited to successfully construct a programmable enzymatic reaction network that mimics cellular communication within a heterogeneous cell community through selective molecular transport.

 

DOI: 10.1002/advs.202305760

Link: https://onlinelibrary.wiley.com/doi/full/10.1002/advs.202305760