Department of Biotechnology and Bioinformatics, Korea University, Sejong 30019, Republic of Korea.
Biological Clock-based Anti-Aging Convergence RLRC, Korea University, Sejong 30019, Republic of Korea.
Nucleic Acids Res. 2024 Aug 12;52(14):8063-8071. doi: 10.1093/nar/gkae532.
Enabling the precise control of protein functions with artificially programmed reaction patterns is beneficial for investigating biological processes. Although several strategies have been established that employ the programmability of nucleic acid, they have been limited to DNA hybridization without external stimuli or target binding. Here, we report an approach for the DNA-mediated control of the tripartite split-GFP assembly via aptamers with responsiveness to intracellular small molecules as stimuli. We designed a novel structure-switching aptamer-peptide conjugate as a hetero modulator for split GFP in response to ATP. By conjugating two peptides (S10/11) derived from the tripartite split-GFP to ATP aptamer, we achieved GFP reassembly using only ATP as a trigger molecule. The response to ATP at ≥4 mM concentrations indicated that it can be applied to respond to intracellular ATP in live cells. Furthermore, our hetero-modulator exhibited high and long-term stability, with a half-life of approximately four days in a serum stability assay, demonstrating resistance to nuclease degradation. We validated that our aptamer-modulator split GFP was successfully reconstituted in the cell in response to intracellular ATP levels. Our aptamer-modulated split GFP platform can be utilized to monitor a wide range of intracellular metabolites by replacing the aptamer sequence.
利用人工编程的反应模式来精确控制蛋白质功能对于研究生物过程是有益的。尽管已经建立了几种利用核酸可编程性的策略,但它们仅限于在没有外部刺激或目标结合的情况下进行 DNA 杂交。在这里,我们报告了一种通过适体来介导 DNA 控制三分体 GFP 组装的方法,该适体对细胞内小分子作为刺激具有响应性。我们设计了一种新型结构切换适体-肽缀合物作为 GFP 的异源调节剂,以响应 ATP。通过将源自三分体 GFP 的两个肽(S10/11)与 ATP 适体偶联,我们仅使用 ATP 作为触发分子实现了 GFP 重组。在≥4 mM 浓度下对 ATP 的响应表明它可以应用于响应活细胞内的细胞内 ATP。此外,我们的异源调节剂表现出高且长期的稳定性,在血清稳定性测定中半衰期约为四天,显示出对核酸酶降解的抗性。我们验证了我们的适体调节剂三分体 GFP 可以成功地在细胞内重新组装,以响应细胞内 ATP 水平。我们的适体调节的 GFP 平台可以通过替换适体序列来监测广泛的细胞内代谢物。