Herein, we report a nongenetic and real-time approach for imaging protein dimerization on living cell surfaces by aptamer recognition and proximity-induced DNA assembly. We use the aptamer specific for the receptor monomer as a recognition probe. When receptor dimerization occurs, the dimeric receptors bring two aptamer probes into close proximity, thereby triggering dynamic DNA assembly. The proposed approach was successfully applied to visualize dimerization of Met receptor and transforming growth factor-β type II receptor. This approach allows us to image the two states (monomer/dimer) of a receptor protein on living cell surfaces in real time, opening a universal method for further investigation of protein dimerization and the correspon...
Background: Dimerization is an important regulatory mechanism of single membrane-spanning receptors....
AbstractSingle wavelength fluorescence cross-correlation spectroscopy (SW-FCCS), introduced to study...
Cell surface receptors play an important role in mediating cell communication and are used as diseas...
Herein, we report a nongenetic and real-time approach for imaging protein dimerization on living cel...
On cell-membrane surfaces, receptor-protein dimers play fundamental roles in many signaling pathways...
Decrypting the dynamics of receptor dimerization on cell membranes bears great importance in identif...
The introduction of super-resolution fluorescence microscopy has allowed the visualization of single...
The introduction of super-resolution fluorescence microscopy has allowed the visualization of single...
International audienceProximity between proteins plays an essential and ubiquitous role in many biol...
The introduction of super resolution fluorescence microscopy has allowed to visualize single protein...
Fundamental biological processes including cell division, migration, and death, are driven by protei...
International audienceCell-surface proteins are important in cell-cell communication. They assemble ...
Signal transduction at cell-cell junctions is critical for many biological processes, such as the de...
Background: Dimerization is an important regulatory mechanism of single membrane-spanning receptors....
AbstractSingle wavelength fluorescence cross-correlation spectroscopy (SW-FCCS), introduced to study...
Cell surface receptors play an important role in mediating cell communication and are used as diseas...
Herein, we report a nongenetic and real-time approach for imaging protein dimerization on living cel...
On cell-membrane surfaces, receptor-protein dimers play fundamental roles in many signaling pathways...
Decrypting the dynamics of receptor dimerization on cell membranes bears great importance in identif...
The introduction of super-resolution fluorescence microscopy has allowed the visualization of single...
The introduction of super-resolution fluorescence microscopy has allowed the visualization of single...
International audienceProximity between proteins plays an essential and ubiquitous role in many biol...
The introduction of super resolution fluorescence microscopy has allowed to visualize single protein...
Fundamental biological processes including cell division, migration, and death, are driven by protei...
International audienceCell-surface proteins are important in cell-cell communication. They assemble ...
Signal transduction at cell-cell junctions is critical for many biological processes, such as the de...
Background: Dimerization is an important regulatory mechanism of single membrane-spanning receptors....
AbstractSingle wavelength fluorescence cross-correlation spectroscopy (SW-FCCS), introduced to study...
Cell surface receptors play an important role in mediating cell communication and are used as diseas...