SummaryProtein localization to membrane-enclosed organelles is a central feature of cellular organization. Using protein correlation profiling, we have mapped 1,404 proteins to ten subcellular locations in mouse liver, and these correspond with enzymatic assays, marker protein profiles, and confocal microscopy. These localizations allowed assessment of the specificity in published organellar proteomic inventories and demonstrate multiple locations for 39% of all organellar proteins. Integration of proteomic and genomic data enabled us to identify networks of coexpressed genes, cis-regulatory motifs, and putative transcriptional regulators involved in organelle biogenesis. Our analysis ties biochemistry, cell biology, and genomics into a com...
Compartmentalization of biological processes and the associated cellular components is crucial for c...
SummaryMass spectrometry (MS)-based proteomics provides a powerful approach to globally investigate ...
lfour major organellar compartments (cytosol, membranes [microsomes], mitochondria, and nuclei) in s...
SummaryProtein localization to membrane-enclosed organelles is a central feature of cellular organiz...
Cells have a rich inner structure that is commonly explored by microscopy. Classical biochemical met...
SummaryOrgans and organelles represent core biological systems in mammals, but the diversity in prot...
Protein subcellular localization is an essential and highly regulated determinant of protein functio...
Prediction of protein sub-cellular localisation by employing quantitative mass spectrometry experime...
Spatial organisation of proteins according to their function plays an important role in the specific...
Subcellular localization critically influences protein function, and cells control protein localizat...
Knowledge of the subcellular localization of proteins is indispensable to understand their physiolog...
We previously developed a mass spectrometry-based method, dynamic organellar maps, for the determina...
Subcellular localization is an important aspect of protein function, but the protein composition of ...
The human cell is complex, with countless processes ongoing in parallel in specialized compartments,...
We previously developed a mass spectrometry-based method, dynamic organellar maps, for the determina...
Compartmentalization of biological processes and the associated cellular components is crucial for c...
SummaryMass spectrometry (MS)-based proteomics provides a powerful approach to globally investigate ...
lfour major organellar compartments (cytosol, membranes [microsomes], mitochondria, and nuclei) in s...
SummaryProtein localization to membrane-enclosed organelles is a central feature of cellular organiz...
Cells have a rich inner structure that is commonly explored by microscopy. Classical biochemical met...
SummaryOrgans and organelles represent core biological systems in mammals, but the diversity in prot...
Protein subcellular localization is an essential and highly regulated determinant of protein functio...
Prediction of protein sub-cellular localisation by employing quantitative mass spectrometry experime...
Spatial organisation of proteins according to their function plays an important role in the specific...
Subcellular localization critically influences protein function, and cells control protein localizat...
Knowledge of the subcellular localization of proteins is indispensable to understand their physiolog...
We previously developed a mass spectrometry-based method, dynamic organellar maps, for the determina...
Subcellular localization is an important aspect of protein function, but the protein composition of ...
The human cell is complex, with countless processes ongoing in parallel in specialized compartments,...
We previously developed a mass spectrometry-based method, dynamic organellar maps, for the determina...
Compartmentalization of biological processes and the associated cellular components is crucial for c...
SummaryMass spectrometry (MS)-based proteomics provides a powerful approach to globally investigate ...
lfour major organellar compartments (cytosol, membranes [microsomes], mitochondria, and nuclei) in s...