生物分子
化学
DNA
细胞信号
纳米技术
生物物理学
生物化学
核酸
细胞生物学
信号转导
材料科学
生物
作者
Guangfu Feng,Xingyu Luo,Lu Xu,Shiyi Xie,Lu Deng,Wenyuan Kang,Fang He,Jiaheng Zhang,Chunyang Lei,Bin Lin,Yan Huang,Zhou Nie,Shouzhuo Yao
标识
DOI:10.1002/anie.201901320
摘要
The comprehensive understanding of the mechanisms underlying the interaction of cells with their membrane microenvironment is of great value for fundamental biological research; however, tracking biomolecules on cell surfaces with high temporal and spatial resolution remains a challenge. Herein, a modular strategy is presented for the construction of cell surface DNA-based sensors by engineering DNA motifs and synthetic cofactors. In this strategy, a stimuli-reactive organic molecule is employed as the cofactor for the DNA motif, and the self-assembly of them forms a FRET-based holo DNA-based sensor. With the use of the DNA-based sensors, the versatility of this modular strategy has been demonstrated in the ratiometric imaging of the cellular extrusion process of endogenous signaling molecules, including sulfur dioxide derivatives and nitric oxide.
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