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Oxidative stress and metabolic dysregulation in goblet cells represent significant contributors to the pathogenesis of ulcerative colitis (UC). TIGAR (TP53-induced glycolysis and apoptosis regulator) plays a critical role as a metabolic regulatory enzyme by promoting NADPH synthesis, thereby counter...
ORGANISM(S): Homo sapiens (Human) 
2026-01-29 | PXD069158 | Pride
Oxidative stress and metabolic dysregulation in goblet cells represent significant contributors to the pathogenesis of ulcerative colitis (UC). TIGAR (TP53-induced glycolysis and apoptosis regulator) plays a critical role as a metabolic regulatory enzyme by promoting NADPH synthesis, thereby counter...
ORGANISM(S): Homo Sapiens 
Blocking 6PGD restricts immunosuppression driven by the innate immune response in cancer
The pentose phosphate pathway (PPP) has always been relegated to the background of cellular metabolism, but our research identifies its unique and provocative influence on cell function, specifically in myeloid-derived suppressor cells (MDSCs). We’ve uncovered that 6-phosphogluconate dehydrogenase (...
ORGANISM(S): Mus musculus 
2025-11-12 | GSE278674 | GEO
Alterations to the androgen receptor (AR) signalling axis and cellular metabolism are hallmarks of prostate cancer. This study provides insight into both hallmarks by uncovering a novel link between AR and the pentose phosphate pathway (PPP). Specifically, we identify 6-phosphogluoconate dehydrogena...
ORGANISM(S): Homo sapiens 
2020-10-01 | GSE152254 | GEO
A feedback loop between the androgen receptor and 6-phosphogluoconate dehydrogenase (6PGD) drives prostate cancer growth
The essential roles of PCNA as a scaffold protein in DNA replication and repair are well established, while its more recently discovered cytosolic roles are less explored. Alpha-enolase (ENO1) and 6-phosphogluconate dehydrogenase (6PGD), important proteins in glycolysis and the Pentose Phosphate Pat...
ORGANISM(S): Homo sapiens (Human) 
2023-03-10 | PXD028314 | Pride
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