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 ac hallenge. Herein, amodular strategy is presented for the construction of cell surface DNA-based sensors by engineering DNAm otifs and synthetic cofactors.I nt his strategy,astimuli-reactive organic molecule is employed as the cofactor for the DNA motif,and the self-assembly of them forms aFRET-based holo DNA-based sensor.Withthe 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,i ncluding sulfur dioxide derivatives and nitric oxide.