We developed "fractionation profiling," a method for rapid proteomic analysis of membrane vesicles and protein particles. The approach combines quantitative proteomics with subcellular fractionation to generate signature protein abundance distribution profiles. Functionally associated groups of proteins are revealed through cluster analysis. To validate the method, we first profiled >3500 proteins from HeLa cells and identified known clathrin-coated vesicle proteins with >90% accuracy. We then profiled >2400 proteins from Drosophila S2 cells, and we report the first comprehensive insect clathrin-coated vesicle proteome. Of importance, the cluster analysis extends to all profiled proteins and thus identifies a diverse range of known and nove...
As proteins within cells are spatially organized according to their role, knowledge about protein lo...
The term proteome is traditionally associated with the identification of a large number of proteins ...
Global and in-depth protein characterisation is a key fundamental step in the unravelling of biologi...
We developed "fractionation profiling," a method for rapid proteomic analysis of membrane vesicles a...
Despite recent advances in mass spectrometry, proteomic characterization of transport vesicles remai...
Protein complexes are critical to virtually every biological process performed by living organisms. ...
In order to maximize coverage in proteome studies, a successful approach is the fractionation of cel...
The characterization of clathrin-coated vesicles (CCVs), including the effects of genetic or biochem...
Protein-protein interactions are important in many cellular processes, but there are still relativel...
peer reviewedProtein-protein interactions (PPIs) play critical functional and regulatory roles in ce...
Eukaryotic cells are highly compartmentalized and protein subcellular localization critically influe...
The degree of protein diversity and dynamic range within organisms means that even the simplest prot...
The degree of protein diversity and dynamic range within organisms means that even the simplest prot...
Most catalytic, structural and regulatory functions of the cell are carried out by functional module...
Proteomics analysis of biofluid-derived vesicles holds enormous potential for discovering non-invasi...
As proteins within cells are spatially organized according to their role, knowledge about protein lo...
The term proteome is traditionally associated with the identification of a large number of proteins ...
Global and in-depth protein characterisation is a key fundamental step in the unravelling of biologi...
We developed "fractionation profiling," a method for rapid proteomic analysis of membrane vesicles a...
Despite recent advances in mass spectrometry, proteomic characterization of transport vesicles remai...
Protein complexes are critical to virtually every biological process performed by living organisms. ...
In order to maximize coverage in proteome studies, a successful approach is the fractionation of cel...
The characterization of clathrin-coated vesicles (CCVs), including the effects of genetic or biochem...
Protein-protein interactions are important in many cellular processes, but there are still relativel...
peer reviewedProtein-protein interactions (PPIs) play critical functional and regulatory roles in ce...
Eukaryotic cells are highly compartmentalized and protein subcellular localization critically influe...
The degree of protein diversity and dynamic range within organisms means that even the simplest prot...
The degree of protein diversity and dynamic range within organisms means that even the simplest prot...
Most catalytic, structural and regulatory functions of the cell are carried out by functional module...
Proteomics analysis of biofluid-derived vesicles holds enormous potential for discovering non-invasi...
As proteins within cells are spatially organized according to their role, knowledge about protein lo...
The term proteome is traditionally associated with the identification of a large number of proteins ...
Global and in-depth protein characterisation is a key fundamental step in the unravelling of biologi...