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The Panc-1 human pancreatic cancer line (ATCC) was constructed to stably express control or GSK3B shRNA. Control or GSK3B shRNA expressing Panc-1 cells were implanted subcutaneously into the flanks of 3-5 week old, female, athymic nude mice. Tumors were grown to at least 250mm3. Tumor tissue was mic...
ORGANISM(S): Homo sapiens 
Transcriptome change led by GSK3B knockout (KO) in colon cancer RKO cells
Impact of GSK3B on accessible chromatin regions in colon cancer RKO cells
Impact of GSK3B on genome-wide H3K27ac in colon cancer RKO cells
In this study, we deciphered cellular mechanisms underlying AXIN1 loss by MEK1/2 inhibition in colorectal cancer (CRC). We observed that both MEK1/2 and GSK3B inhibitors strongly reduce AXIN1 levels across multiple CRC models. Inhibition of MEK1/2, but not GSK3B, causes a reduction of AXIN1 transcri...
ORGANISM(S): Homo sapiens (Human) 
2026-06-03 | PXD067308 | Pride
The Panc-1 human pancreatic cancer line (ATCC) was constructed to stably express control or GSK3B shRNA. Control or GSK3B shRNA expressing Panc-1 cells were implanted subcutaneously into the flanks of 3-5 week old, female, athymic nude mice. Tumors were grown to at least 250mm3. Tumor tissue was mic...
ORGANISM(S): Homo sapiens 
2014-01-09 | GSE35351 | GEO
The effect of Intestinal epithelial GSK3B loss on chromatin accessibility in the AOM/DSS-induced colon cancer model
The close integration of the MAPK, PI3K and WNT signaling pathways underpins much of development and is deregulated in cancer. In principle, combinatorial post-translational modification of key lineage–specific transcription factors would be an effective means to integrate critical signaling events....
ORGANISM(S): Mus musculus (Mouse) 
2022-02-28 | PXD010665 | Pride
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