Subcellular localization critically influences protein function, and cells control protein localization to regulate biological processes. We have developed and applied Dynamic Organellar Maps, a proteomic method that allows global mapping of protein translocation events. We initially used maps statically to generate a database with localization and absolute copy number information for over 8700 proteins from HeLa cells, approaching comprehensive coverage. All major organelles were resolved, with exceptional prediction accuracy (estimated at >92%). Combining spatial and abundance information yielded an unprecedented quantitative view of HeLa cell anatomy and organellar composition, at the protein level. We subsequently demonstrated the dynam...
Dramatic advances in methods for protein tagging and the development of fully automated microscopes ...
Protein subcellular localization is tightly controlled and intimately linked to protein function in ...
Cells have a rich inner structure that is commonly explored by microscopy. Classical biochemical met...
Protein subcellular localization is an essential and highly regulated determinant of protein functio...
Eukaryotic cells are highly compartmentalized and protein subcellular localization critically influe...
We previously developed a mass spectrometry-based method, dynamic organellar maps, for the determina...
We previously developed a mass spectrometry-based method, dynamic organellar maps, for the determina...
<p>In biology, localisation is function. Cells display a complex sub-cellular structure with numerou...
We previously developed a mass spectrometry-based method, Dynamic Organellar Maps, for the determina...
Functional characterization of every single protein is a major challenge of the post-genomic era. Th...
A major challenge in cell biology is to identify the subcellular distribution of proteins within cel...
SummaryProtein localization to membrane-enclosed organelles is a central feature of cellular organiz...
Knowledge of the subcellular distribution of proteins is vital for understanding cellular mechanisms...
Characterizing the molecular components of the basic unit of life; the cell, is crucial for a comple...
A major source of information for identifying subcellular location on a proteome-wide basis will be ...
Dramatic advances in methods for protein tagging and the development of fully automated microscopes ...
Protein subcellular localization is tightly controlled and intimately linked to protein function in ...
Cells have a rich inner structure that is commonly explored by microscopy. Classical biochemical met...
Protein subcellular localization is an essential and highly regulated determinant of protein functio...
Eukaryotic cells are highly compartmentalized and protein subcellular localization critically influe...
We previously developed a mass spectrometry-based method, dynamic organellar maps, for the determina...
We previously developed a mass spectrometry-based method, dynamic organellar maps, for the determina...
<p>In biology, localisation is function. Cells display a complex sub-cellular structure with numerou...
We previously developed a mass spectrometry-based method, Dynamic Organellar Maps, for the determina...
Functional characterization of every single protein is a major challenge of the post-genomic era. Th...
A major challenge in cell biology is to identify the subcellular distribution of proteins within cel...
SummaryProtein localization to membrane-enclosed organelles is a central feature of cellular organiz...
Knowledge of the subcellular distribution of proteins is vital for understanding cellular mechanisms...
Characterizing the molecular components of the basic unit of life; the cell, is crucial for a comple...
A major source of information for identifying subcellular location on a proteome-wide basis will be ...
Dramatic advances in methods for protein tagging and the development of fully automated microscopes ...
Protein subcellular localization is tightly controlled and intimately linked to protein function in ...
Cells have a rich inner structure that is commonly explored by microscopy. Classical biochemical met...