Hou Jinxing, Guo Jiale, Yan Tengfei, Liu Shengda, Zang Mingsong, Wang Liang, Xu Jiayun, Luo Quan, Wang Tingting, Liu Junqiu
State Key Laboratory of Supramolecular Structure and Materials, College of Chemistry, Jilin University 2699 Qianjin Road Changchun 130012 China
College of Material, Chemistry and Chemical Engineering, Hangzhou Normal University Hangzhou 311121 China.
Chem Sci. 2023 May 10;14(22):6039-6044. doi: 10.1039/d2sc06701c. eCollection 2023 Jun 7.
Inspired by nature, it is of significant importance to design and construct biomimetic signaling systems to mimic natural signal transduction. Herein, we report an azobenzene/α-cyclodextrin (α-CD)-based signal transduction system with three functional modules: a light-responsive headgroup, lipid-anchored group, pro-catalyst tailgroup. The transducer can be inserted into the vesicular membrane to trigger the transmembrane translocation of molecules under the activation of light, forming a ribonuclease-like effector site and leading to the transphosphorylation of the RNA model substrate inside the vesicles. Moreover, the transphosphorylation process can be reversibly turned 'ON/OFF' over multiple cycles by the activation and deactivation of the pro-catalyst. This artificial photo-controlled signal transduction successfully constructs a signal responsive catalysis system across the membrane to utilize light to reversibly control the internal transphosphorylation process of an RNA model substrate, which might provide a new strategy for future design to utilize exogenous signals for implementing endogenous enzyme manipulation and gene regulation.
受自然启发,设计和构建仿生信号系统以模拟自然信号转导具有重要意义。在此,我们报道了一种基于偶氮苯/α-环糊精(α-CD)的信号转导系统,它具有三个功能模块:光响应头基、脂质锚定基团、前催化剂尾基。该传感器可插入囊泡膜中,在光激活下触发分子的跨膜转运,形成类似核糖核酸酶的效应位点,并导致囊泡内RNA模型底物的转磷酸化。此外,通过前催化剂的激活和失活,转磷酸化过程可以在多个循环中可逆地“开启/关闭”。这种人工光控信号转导成功构建了一个跨膜信号响应催化系统,利用光可逆地控制RNA模型底物的内部转磷酸化过程,这可能为未来利用外源信号实现内源性酶操纵和基因调控的设计提供新策略。