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The functions of many human proteins remain unknown, highlighting major gaps in our understanding of cellular biology. TTC33 is an evolutionarily conserved tetratricopeptide repeat (TPR) protein expressed across human tissues, whose molecular role is not defined. Here we identify the TTC33 partners ...
ORGANISM(S): Homo sapiens (Human) 
2026-07-13 | PXD043138 | Pride
How the ubiquitously expressed splicing factors specifically regulate neural crest (NC) development and enhance their vulnerability to splicing perturbations remain poorly understood. Here, we show that NC-specific DLC1, partnering with SF3B1-PHF5A splicing complex, are crucial for determining avian...
ORGANISM(S): Gallus Gallus 
2025-06-09 | PXD064804 |
The functions of many human proteins remain unknown, highlighting major gaps in our understanding of cellular biology. TTC33 is an evolutionarily conserved tetratricopeptide repeat (TPR) protein expressed across human tissues, whose molecular role is not defined. Here we identify the TTC33 partners ...
ORGANISM(S): Homo sapiens (Human) 
2026-07-09 | PXD043098 | Pride
Pancreatic cancer (PC) remains one of the most aggressive and life-threatening malignancies known for its notorious resistance to chemotherapy. This is increasingly ascribed to the subpopulation of undifferentiated cells, known as pancreatic cancer stem cells (PCSCs), which are evolutionary fitter t...
ORGANISM(S): Homo sapiens (Human) 
2023-08-23 | PXD038378 | Pride
TTC33-associated network (TAN) is a novel vertebrate-specific complex formed by TTC33, WDR61 and PHF5A
Determination of Trunk Neural Crest Cell Fate and Susceptibility to Splicing Perturbation by the DLC1-SF3B1-PHF5A splicing complex
Phf5a regulates transcription elongation in mouse embryonic stem cells (ESCs), through regulation of the Paf1 complex. In this study we assayed for genome-wide localization of Paf1, Leo1 and Cdc73 subunits of the Paf1 complex in mouse ESCs under conditions of shControl and shPhf5a knockdown. These r...
ORGANISM(S): Mus musculus 
2016-08-31 | GSE73445 | GEO
Phf5a regulates occupancy of Paf1 complex in mouse myotubes. In this study we assayed for genome-wide localization of Leo1 subunit of the Paf1 complex in mouse myoblasts or myotubes under conditions of shControl or shPhf5a knockdown. These results revealed that downregualtion of Phf5a results in sig...
ORGANISM(S): Mus musculus 
2016-08-31 | GSE86249 | GEO
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