化学
变构调节
荧光
调制(音乐)
信号转导
生命系统
多巴胺
荧光寿命成像显微镜
转导(生物物理学)
生物物理学
核糖核酸
费斯特共振能量转移
细胞生物学
活体细胞成像
变构酶
活细胞
生物化学
生物传感器
酶
辅助生活
作者
Zan Gong,Panpan Yuan,Y LI,Yalan Tang,Kexin Li,Zeping Liu,Yuyang Wang,Shian Zhong,Yanjing Yang
标识
DOI:10.1021/acs.analchem.6c02054
摘要
Precise regulation of dopamine signaling underlies diverse neuronal processes, yet methods that directly report intracellular dopamine-associated dynamics in living systems remain limited. Here, we present DARibo-Q, a genetically encoded RNA fluorescent biosensor that enables fluorescence imaging of intracellular dopamine-associated modulation through a rationally engineered RNA allosteric transduction architecture. By coupling dopamine recognition to graded shifts in RNA conformational equilibria, DARibo-Q converts ligand-associated changes into a continuous and interpretable optical output under physiological conditions rather than a threshold-based or amplification-dependent response. In neuronal cells, DARibo-Q reports relative dopamine-associated fluorescence changes and resolves mechanistically distinct modes of dopaminergic regulation, enabling mechanism-informed analysis of dopaminergic compounds. The sensor further supports in vivo visualization of drug-modulated dopamine dynamics in zebrafish. Together, this work demonstrates that RNA allostery can be engineered to achieve direct, relatively quantitative signal transduction of small-molecule neurotransmitters in living systems.
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