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Mapping the subcellular organization of proteins is crucial for understanding their biological functions. Herein, we report a reactive oxygen species induced protein labeling and identification (RinID) method for profiling subcellular proteome in the context of living cells. Our method capitalizes o...
ORGANISM(S): Homo sapiens (Human) 
2023-07-20 | PXD037678 | Pride
Mapping the subcellular organization of proteins is crucial for understanding their biological functions. Herein, we report a reactive oxygen species induced protein labeling and identification (RinID) method for profiling subcellular proteome in the context of living cells. Our method capitalizes o...
ORGANISM(S): Homo sapiens (Human) 
2023-07-20 | PXD034532 | Pride
Mapping the spatial organization of proteins and cellular interactions is crucial for understanding their biological functions. Herein, we report a biocompatible, multi-functional luminescence-activated proximity labeling (LAP) strategy for profiling subcellular proteomes and cell-cell interactions ...
ORGANISM(S): Mus musculus Homo sapiens 
2025-05-10 | GSE276085 | GEO
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