We present an ultrasensitive technique for quantitative protein–protein interaction analysis in a two-dimensional format based on phase-separated, micropatterned membranes. Interactions between proteins captured to lipid probes via an affinity tag trigger partitioning into the liquid-ordered phase, which is readily quantified by fluorescence imaging. Based on a calibration with well-defined low-affinity protein–protein interactions, equilibrium dissociation constants >1 mM were quantified. Direct capturing of proteins from mammalian cell lysates enabled us to detect homo- and heterodimerization of signal transducer and activator of transcription proteins. Using the epidermal growth factor receptor (EGFR) as a model system, qu...
Cells sense biochemical as well as mechanical signals from their microenvironment by engaging multip...
Background: The molecular analysis of intracellular signal transduction requires technologies that q...
<div><p>Functional imaging can provide a level of quantification that is not possible in what might ...
We present an ultrasensitive technique for quantitative protein–protein interaction analysis i...
We present an ultrasensitive technique for quantitative protein–protein interaction analysis in a tw...
Interactions between membrane proteins are poorly understood despite their importance in cell signal...
Interactions between membrane proteins are poorly understood despite their importance in cell signal...
[[abstract]]The understanding of protein interaction dynamics is important for signal transduction r...
Membrane bound cell signaling is modulated by the membrane ultra-structure, which itself may be affe...
on Micro-patterned Surfaces. J. Vis. Exp. (37), e1969, doi:10.3791/1969 (2010). Unraveling the inter...
(A) Schematic of the Co-II assay. The interaction between a fluorescently labeled prey protein and a...
Molecular interactions are key to many chemical and biological processes like protein function. In m...
AbstractThis study presents a fluorescence-based assay that allows for direct measurement of protein...
Functional imaging can provide a level of quantification that is not possible in what might be terme...
AbstractSingle wavelength fluorescence cross-correlation spectroscopy (SW-FCCS), introduced to study...
Cells sense biochemical as well as mechanical signals from their microenvironment by engaging multip...
Background: The molecular analysis of intracellular signal transduction requires technologies that q...
<div><p>Functional imaging can provide a level of quantification that is not possible in what might ...
We present an ultrasensitive technique for quantitative protein–protein interaction analysis i...
We present an ultrasensitive technique for quantitative protein–protein interaction analysis in a tw...
Interactions between membrane proteins are poorly understood despite their importance in cell signal...
Interactions between membrane proteins are poorly understood despite their importance in cell signal...
[[abstract]]The understanding of protein interaction dynamics is important for signal transduction r...
Membrane bound cell signaling is modulated by the membrane ultra-structure, which itself may be affe...
on Micro-patterned Surfaces. J. Vis. Exp. (37), e1969, doi:10.3791/1969 (2010). Unraveling the inter...
(A) Schematic of the Co-II assay. The interaction between a fluorescently labeled prey protein and a...
Molecular interactions are key to many chemical and biological processes like protein function. In m...
AbstractThis study presents a fluorescence-based assay that allows for direct measurement of protein...
Functional imaging can provide a level of quantification that is not possible in what might be terme...
AbstractSingle wavelength fluorescence cross-correlation spectroscopy (SW-FCCS), introduced to study...
Cells sense biochemical as well as mechanical signals from their microenvironment by engaging multip...
Background: The molecular analysis of intracellular signal transduction requires technologies that q...
<div><p>Functional imaging can provide a level of quantification that is not possible in what might ...