Dimerization of transmembrane receptors is a key regulatory factor in cellular communication, which has remained challenging to study under well-defined conditions <i>in vitro</i>. We developed a novel strategy to explore membrane protein interactions in a controlled lipid environment requiring minute sample quantities. By rapid transfer of transmembrane proteins from mammalian cells into polymer-supported membranes, membrane proteins could be efficiently fluorescence labeled and reconstituted with very low background. Thus, differential ligand-induced dimerization of the type I interferon (IFN) receptor subunits IFNAR1 and IFNAR2 could be probed quantitatively at physiologically relevant concentrations by single molecule imaging. These mea...
Localization and tracking of individual receptors by single-molecule imaging opens unique possibilit...
Localization and tracking of individual receptors by single-molecule imaging opens unique possibilit...
Localization and tracking of individual receptors by single-molecule imaging opens unique possibilit...
Dimerization of transmembrane receptors is a key regulatory factor in cellular communication, which ...
Dimerization of transmembrane receptors is a key regulatory factor in cellular communication, which ...
Dimerization of transmembrane receptors is a key regulatory factor in cellular communication, which ...
Dimerization of transmembrane receptors is a key regulatory factor in cellular communication, which ...
Signal propagation across the membrane by cytokine receptor signalling involves a complex interplay ...
AbstractWe describe an experimental approach for studying ligand-receptor interactions in the plane ...
AbstractWe describe an experimental approach for studying ligand-receptor interactions in the plane ...
AbstractLigand-receptor interactions within the plane of the plasma membrane play a pivotal role for...
Two transmembrane polypeptides, IFNAR and IFN-a/bR, were previously identified as essential compo-ne...
Localization and tracking of individual receptors by single-molecule imaging opens unique possibilit...
Localization and tracking of individual receptors by single-molecule imaging opens unique possibilit...
Localization and tracking of individual receptors by single-molecule imaging opens unique possibilit...
Localization and tracking of individual receptors by single-molecule imaging opens unique possibilit...
Localization and tracking of individual receptors by single-molecule imaging opens unique possibilit...
Localization and tracking of individual receptors by single-molecule imaging opens unique possibilit...
Dimerization of transmembrane receptors is a key regulatory factor in cellular communication, which ...
Dimerization of transmembrane receptors is a key regulatory factor in cellular communication, which ...
Dimerization of transmembrane receptors is a key regulatory factor in cellular communication, which ...
Dimerization of transmembrane receptors is a key regulatory factor in cellular communication, which ...
Signal propagation across the membrane by cytokine receptor signalling involves a complex interplay ...
AbstractWe describe an experimental approach for studying ligand-receptor interactions in the plane ...
AbstractWe describe an experimental approach for studying ligand-receptor interactions in the plane ...
AbstractLigand-receptor interactions within the plane of the plasma membrane play a pivotal role for...
Two transmembrane polypeptides, IFNAR and IFN-a/bR, were previously identified as essential compo-ne...
Localization and tracking of individual receptors by single-molecule imaging opens unique possibilit...
Localization and tracking of individual receptors by single-molecule imaging opens unique possibilit...
Localization and tracking of individual receptors by single-molecule imaging opens unique possibilit...
Localization and tracking of individual receptors by single-molecule imaging opens unique possibilit...
Localization and tracking of individual receptors by single-molecule imaging opens unique possibilit...
Localization and tracking of individual receptors by single-molecule imaging opens unique possibilit...