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The Dynamic Organellar Maps (DOMs) approach combines cell fractionation and shotgun-proteomics for global profiling analysis of protein subcellular localization. Here, we have drastically enhanced the performance of DOMs through data-independent acquisition (DIA) mass spectrometry (MS). DIA-DOMs ach...
ORGANISM(S): Homo sapiens (Human) 
2023-08-25 | PXD034971 | Pride
The Dynamic Organellar Maps (DOMs) approach combines cell fractionation and shotgun-proteomics for global profiling analysis of protein subcellular localization. Here, we have drastically enhanced the performance of DOMs through data-independent acquisition (DIA) mass spectrometry (MS). DIA-DOMs ach...
ORGANISM(S): Homo sapiens (Human) 
2023-08-25 | PXD034969 | Pride
The Dynamic Organellar Maps (DOMs) approach combines cell fractionation and shotgun-proteomics for global profiling analysis of protein subcellular localization. Here, we have drastically enhanced the performance of DOMs through data-independent acquisition (DIA) mass spectrometry (MS). DIA-DOMs ach...
ORGANISM(S): Homo sapiens (Human) 
2023-08-25 | PXD034962 | Pride
Organellar proteomics of golgi aparatus, experiment 1
ORGANISM(S): Rattus norvegicus (Rat) 
2010-04-29 | PRD000754 | Pride
Protein import into organelles is essential for all eukaryotes and facilitated by multi-protein translocation machineries. Analyzing whether a protein is transported into an organelle is largely restricted to single constituents. This renders knowledge about imported proteins incomplete, limiting ou...
ORGANISM(S): Trypanosoma brucei 
2017-06-14 | PXD004979 | Pride
Protein import into organelles is essential for all eukaryotes and facilitated by multi-protein translocation machineries. Analyzing whether a protein is transported into an organelle is largely restricted to single constituents. This renders knowledge about imported proteins incomplete, limiting ou...
ORGANISM(S): Trypanosoma brucei 
2017-06-14 | PXD004917 | Pride
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