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Published on: May 5, 2022
SALL4 promotes glycolysis and chromatin remodeling via modulating HP1α-Glut1 pathway
1Cancer Research Institute, School of Basic Medical Sciences, Southern Medical University, Guangzhou, China.
Abstract:
SALL4 has recently been identified to promote chemo-resistance in multiple types of cancer, but the underlying mechanism remains to be fully established. Open chromatin structure is important for DNA damage response (DDR) and DNA repair. Here, we demonstrate that SALL4 promotes open chromatin by destabilizing heterochromatin protein 1α (HP1α) by recruiting ubiquitin E3 ligase CUL4B to HP1α. The silencing of SALL4 in cancer cells decreased the expression levels of Glut1 and inhibited glycolysis in cancer cells. The upregulation of HP1α in human cancer cells suppressed open chromatin, glycolysis and Glut1 expression levels. Therefore, SALL4 promotes the expression of Glut1 and open chromatin through a HP1α-dependent mechanism. Impaired DDR in SALL4-deficient human cancer cells can be rescued by the restored expression of Glut1, indicating the importance of HP1α-Glut1 axis in SALL4-mediated DDR. These findings demonstrate that SALL4 could induce drug resistance by enhancing DDR and DNA repair through promoting glycolysis and subsequent chromatin remodeling.
Insights
SALL4 promotes cancer chemo-resistance by enhancing DNA repair and glycolysis. It achieves this by opening chromatin structure via the HP1α-Glut1 axis, aiding cancer cell survival.
Area of Science:
- Oncology
- Molecular Biology
- Epigenetics
Background:
- SALL4 is implicated in chemo-resistance across various cancers.
- Open chromatin is crucial for DNA damage response (DDR) and repair.
- The precise mechanism of SALL4 in chemo-resistance requires elucidation.
Observation:
- SALL4 destabilizes heterochromatin protein 1α (HP1α) by recruiting CUL4B, leading to open chromatin.
- SALL4 silencing reduces Glut1 expression and glycolysis in cancer cells.
- Increased HP1α suppresses open chromatin, glycolysis, and Glut1.
Findings:
- SALL4 promotes Glut1 expression and open chromatin via an HP1α-dependent pathway.
- Restoring Glut1 rescues impaired DDR in SALL4-deficient cancer cells.
- The HP1α-Glut1 axis is vital for SALL4-mediated DDR.
Implications:
- SALL4 drives drug resistance by enhancing DDR and DNA repair.
- This occurs through promoting glycolysis and subsequent chromatin remodeling.
- Targeting the SALL4-HP1α-Glut1 pathway may offer novel chemo-resistance strategies.
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