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Combining pharmacologic and genetic tools to induce post-translational protein knockdown is an emerging approach to probe biology and validate potential drug targets. A powerful strategy involves expression of a protein of interest fused to an exogenous tag, allowing tag-directed chemical degraders ...
ORGANISM(S): Homo sapiens (Human) 
2019-11-13 | PXD012828 | Pride
Biological mechanisms are inherently dynamic, requiring precise and rapid manipulations for effective characterization. Traditional genetic manipulations operate on long timescales, making them unsuitable for studying dynamic processes or characterizing essential genes, where chronic depletion can c...
ORGANISM(S): Homo sapiens 
2025-06-24 | GSE300048 | GEO
Biological mechanisms are inherently dynamic, requiring precise and rapid manipulations for effective characterization. Traditional genetic manipulations operate on long timescales, making them unsuitable for studying dynamic processes or characterizing essential genes, where chronic depletion can c...
ORGANISM(S): Homo sapiens 
2025-06-26 | GSE300296 | GEO
Biological mechanisms are inherently dynamic, requiring precise and rapid manipulations for effective characterization. Traditional genetic manipulations operate on long timescales, making them unsuitable for studying dynamic processes or characterizing essential genes, where chronic depletion can c...
ORGANISM(S): Homo sapiens 
2025-06-26 | GSE300297 | GEO
Nuclear speckles are conserved, membrane-less organelles linked to various post-transcriptional processes. Here, we examined their roles in human cells by engineered, acute removal of SON and SRRM2, two conserved speckle core components characterized by intrinsically disordered regions (IDRs). Their...
ORGANISM(S): Homo sapiens (Human) 
2026-02-25 | PXD009359 | Pride
Nuclear Speckles enable processing of RNA from GC-rich Isochores [SON_Halo_pSR_SF3B1_FLASH]
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