核酸
催化作用
化学
组合化学
化学反应
化学生物学
化学合成
生物化学
反应条件
有机化学
化学改性
DNA
核糖核酸
反应机理
核酸法
作者
Richard James Archer,Hirotake Udono,Masahiro Takinoue
标识
DOI:10.1016/j.sbi.2026.103384
摘要
Nucleic acid condensates are emerging as programmable soft materials capable of organizing and regulating biochemical reactions through sequence-directed interactions. Inspired by biological membrane-less organelles formed by liquid-liquid phase separation, synthetic DNA and RNA condensates can selectively concentrate, exclude, and spatially organize biomolecules to modulate catalytic activity and reaction pathways. Recent advances in sequence design have enabled precise control over condensate assembly, phase behavior, orthogonality, and responsiveness to molecular signals. In particular, multivalent DNA and RNA motifs assembled through sticky-end or kissing-loop interactions provide versatile platforms for constructing dynamically reconfigurable reaction environments. Furthermore, coupling condensates with strand displacement circuits, reaction-diffusion systems, and catalytic feedback enables spatiotemporal regulation of reactions and condensate organization. Here, we review recent progress in synthetic nucleic acid condensates as programmable regulators of chemical reactions and catalysis, highlighting their potential as adaptive and life-like reaction environments.
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