Ouyang Yu, Willner Itamar
Institute of Chemistry, The Hebrew University of Jerusalem, Jerusalem, 91904, Israel.
Angew Chem Int Ed Engl. 2025 Feb 24;64(9):e202420787. doi: 10.1002/anie.202420787. Epub 2025 Jan 14.
A method to photomodulate dynamically transient DNA-based reaction circuits and networks is introduced. The method relies on the integration of photoresponsive o-nitrobenzyl-phosphate ester-caged DNA hairpin with a "mute" reaction module. Photodeprotection (λ=365 nm) of the hairpin structure separates a fuel strand triggering the dynamic, transient, operation of the DNA circuit/network. By temporal photocleavage of the hairpin within the course of transient operation of the circuit, photomodulation of the systems are demonstrated. The modulation amplitude and rhythms are controlled by the time-interval and cycle numbers of photo-deprotecting the hairpin structure. The method is applied to transiently photomodulate the catalytic activities of a DNAzyme, enabling the photomodulation of the transient assembly of a constitutional dynamic network (CDN) and the transient reconfiguration of the CDN framework. The different systems are supported by computational kinetic models allowing to predict, and experimentally validate, the behavior of the systems under variable auxiliary conditions. Moreover, the photomodulated transient CDNs are implemented as functional frameworks guiding the thrombin-catalyzed coagulation of fibrinogen to fibrin (fibrinogenesis) and photomodulated operation of a biocatalytic cascade.
介绍了一种对基于DNA的动态瞬态反应电路和网络进行光调制的方法。该方法依赖于将光响应性邻硝基苄基磷酸酯笼化的DNA发夹与一个“沉默”反应模块相结合。发夹结构的光脱保护(λ = 365 nm)会分离出触发DNA电路/网络动态、瞬态运行的燃料链。通过在电路瞬态运行过程中对发夹进行定时光切割,展示了对系统的光调制。调制幅度和节奏由发夹结构光脱保护的时间间隔和循环次数控制。该方法应用于对DNA酶的催化活性进行瞬时光调制,实现了对组成型动态网络(CDN)瞬态组装的光调制以及CDN框架的瞬态重构。不同的系统由计算动力学模型支持,该模型能够预测并通过实验验证系统在可变辅助条件下的行为。此外,光调制的瞬态CDN被用作功能框架,指导凝血酶催化纤维蛋白原向纤维蛋白的凝固(纤维蛋白生成)以及生物催化级联反应的光调制操作。