Pull-downs based on tag fusion proteins as well as immunoprecipitations (IP) are widely used methods to analyze protein interactions. Selectivity and specificity of both methods are compromised by nonspecific binding to the capture agent or carrier beads thereby generating false positives. Here, we provide a method combining stable isotope labeling of amino acids in cell culture (SILAC) with affinity purification, coupled to quantitative tandem mass spectrometry. It permits the analysis of protein interactions with high sensitivity, while being able to discriminate contaminants and nonspecific binders. Besides pruning out contaminants, high-resolution MS data combined with quantitative proteomics software allow the comparative analysis of p...
Since most cellular processes depend on interactions between proteins, information about protein-pro...
Protein complexes are essential in all organizational and functional aspects of the cell. Different ...
Protein-protein interactions are fundamental to the understanding of biological processes. Affinity ...
The reliable identification of protein interaction partners and how such interactions change in resp...
Protein-protein interactions are essential to various physiological processes in living cells. A ful...
The identification of interaction partners in protein complexes is a major goal in cell biology. Her...
Dynamically interacting proteins associate and dissociate with their binding partners at high on/off...
AbstractPull-down assays can identify members of protein complexes but suffer from co-isolation of c...
Pull-down assays can identify members of protein complexes but suffer from co-isolation of contamina...
Label-based quantitative mass spectrometry analysis of affinity purified complexes, with its built-i...
Precise quantification is a major issue in contemporary proteomics. Both stable-isotope-labeling and...
Analysis by combined liquid chromatographic separation and mass spectrometry (LC-MS) is rapidly beco...
Protein complexes are essential in all organizational and functional aspects of the cell. Different ...
Mass spectrometry(MS) have become an increasingly popular analysis method for high throughput experi...
Mass spectrometry-based quantitative proteomics can identify and quantify thousands of proteins in c...
Since most cellular processes depend on interactions between proteins, information about protein-pro...
Protein complexes are essential in all organizational and functional aspects of the cell. Different ...
Protein-protein interactions are fundamental to the understanding of biological processes. Affinity ...
The reliable identification of protein interaction partners and how such interactions change in resp...
Protein-protein interactions are essential to various physiological processes in living cells. A ful...
The identification of interaction partners in protein complexes is a major goal in cell biology. Her...
Dynamically interacting proteins associate and dissociate with their binding partners at high on/off...
AbstractPull-down assays can identify members of protein complexes but suffer from co-isolation of c...
Pull-down assays can identify members of protein complexes but suffer from co-isolation of contamina...
Label-based quantitative mass spectrometry analysis of affinity purified complexes, with its built-i...
Precise quantification is a major issue in contemporary proteomics. Both stable-isotope-labeling and...
Analysis by combined liquid chromatographic separation and mass spectrometry (LC-MS) is rapidly beco...
Protein complexes are essential in all organizational and functional aspects of the cell. Different ...
Mass spectrometry(MS) have become an increasingly popular analysis method for high throughput experi...
Mass spectrometry-based quantitative proteomics can identify and quantify thousands of proteins in c...
Since most cellular processes depend on interactions between proteins, information about protein-pro...
Protein complexes are essential in all organizational and functional aspects of the cell. Different ...
Protein-protein interactions are fundamental to the understanding of biological processes. Affinity ...