SummaryIt has become increasingly clear that protein-protein interactions (PPIs) are compartmentalized in nanoscale domains that define the biochemical architecture of the cell. Despite tremendous advances in super-resolution imaging, strategies to observe PPIs at sufficient resolution to discern their organization are just emerging. Here we describe a strategy in which PPIs induce reconstitution of fluorescent proteins (FPs) that are capable of exhibiting single-molecule fluctuations suitable for stochastic optical fluctuation imaging (SOFI). Subsequently, spatial maps of these interactions can be resolved in super-resolution in living cells. Using this strategy, termed reconstituted fluorescence-based SOFI (refSOFI), we investigated the i...
Super-resolution microscopy via PAINT has been widely adopted in life sciences to interrogate the na...
Super-resolution microscopy via PAINT has been widely adopted in life sciences to interrogate the na...
Cells are the basic unit of life and, within cells, thousands of unique proteins work in concert to ...
SummaryIt has become increasingly clear that protein-protein interactions (PPIs) are compartmentaliz...
It has become increasingly clear that protein-protein interactions (PPIs) are compartmentalized in n...
It has become increasingly clear that protein-protein interactions (PPIs) are compartmentalized in n...
Imaging the location and dynamics of individual interacting protein pairs is essential but often dif...
Protein–protein interactions (PPIs) form the basis of cellular processes, regulating cell behavior a...
Protein–protein interactions (PPIs) form the basis of cellular processes, regulating cell behavior a...
Protein–protein interactions (PPIs) form the basis of cellular processes, regulating cell behavior a...
Protein–protein interactions (PPIs) form the basis of cellular processes, regulating cell behavior a...
Living organisms consist of cells, the elementary components of which are proteins providing cellula...
Several signaling proteins require self-association of individual monomer units to be activated for ...
Interactions between biomolecules such as proteins underlie most cellular processes. It is crucial t...
Imaging the location and dynamics of individual interacting protein pairs is essential but often dif...
Super-resolution microscopy via PAINT has been widely adopted in life sciences to interrogate the na...
Super-resolution microscopy via PAINT has been widely adopted in life sciences to interrogate the na...
Cells are the basic unit of life and, within cells, thousands of unique proteins work in concert to ...
SummaryIt has become increasingly clear that protein-protein interactions (PPIs) are compartmentaliz...
It has become increasingly clear that protein-protein interactions (PPIs) are compartmentalized in n...
It has become increasingly clear that protein-protein interactions (PPIs) are compartmentalized in n...
Imaging the location and dynamics of individual interacting protein pairs is essential but often dif...
Protein–protein interactions (PPIs) form the basis of cellular processes, regulating cell behavior a...
Protein–protein interactions (PPIs) form the basis of cellular processes, regulating cell behavior a...
Protein–protein interactions (PPIs) form the basis of cellular processes, regulating cell behavior a...
Protein–protein interactions (PPIs) form the basis of cellular processes, regulating cell behavior a...
Living organisms consist of cells, the elementary components of which are proteins providing cellula...
Several signaling proteins require self-association of individual monomer units to be activated for ...
Interactions between biomolecules such as proteins underlie most cellular processes. It is crucial t...
Imaging the location and dynamics of individual interacting protein pairs is essential but often dif...
Super-resolution microscopy via PAINT has been widely adopted in life sciences to interrogate the na...
Super-resolution microscopy via PAINT has been widely adopted in life sciences to interrogate the na...
Cells are the basic unit of life and, within cells, thousands of unique proteins work in concert to ...