Environment‐Responsive Self‐Assembly and Coupled‐Network Effect in Dynamic Replicating Nucleopeptide Networks

Y Yingjie Huang Y Yushun Zhou Y Yulu Wang M Mengjiao Wang H Hui Zhao (Center of Ionic Liquid and Green Energy, Beijing Key Laboratory of Solid State Battery and Energy Storage Process, State Key Laboratory of Mesoscience and Engineering, Institute of Process Engineering)

Abstract

Abstract The development of complex, adaptive behaviors in chemical systems hinges on the intricate coupling between reaction networks and self‐organizing processes. Self‐assembling networks, particularly those capable of self‐replication, provide a unique platform for studying how molecular interactions drive temporally evolving, system‐level behaviors. While environmental factors are known to shape the dynamic evolution of such networks, most studies have focused on static or single‐class systems, such as isolated peptides or nucleic acids. This approach overlooks two critical dimensions of complexity: 1) nonlinear interspecies dynamics in multicomponent systems, and 2) inter‐network coupling phenomena. Here, we investigate dynamic nucleopeptide networks exhibiting environment‐responsive self‐assembly, demonstrating how nucleobases and short peptides dynamically synergize under specific conditions to form organized, self‐replicating structures. And we reveal how such networks orchestrate the interplay between cooperative and competitive species to achieve dynamic adaptation to environmental parameters (e.g., pH, temperature, and ionic strength). Furthermore, inspired by nucleobases’ genetic information function, we utilized the base‐specific recognition in nucleopeptide assemblies for hierarchical network coupling—transmitting environmental signals from stimulus‐sensitive to stimulus‐insensitive systems. These findings offer new insights into temporal and cross‐network regulation of self‐assembly and reaction dynamics, providing a framework for designing adaptive, life‐like chemical systems that evolve and communicate with environmental signals.

Article Details

Volume / Issue Vol. 65, Issue 2
Published January 09, 2026
ISSN 1433-7851
Publisher Wiley

Journal Info

Angewandte Chemie International Edition

Wiley

ISSN: 1433-7851 Physical Sciences

Authors (5)

Y

Yingjie Huang

Y

Yushun Zhou

Y

Yulu Wang

M

Mengjiao Wang

H

Hui Zhao

Center of Ionic Liquid and Green Energy, Beijing Key Laboratory of Solid State Battery and Energy Storage Process, State Key Laboratory of Mesoscience and Engineering, Institute of Process Engineering