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Updated: May 10, 2026

Analysis of SCAP N-glycosylation and Trafficking in Human Cells
Published on: November 8, 2016
Knockdown of core binding factorβ alters sphingolipid metabolism
Adam H Greer1, Thomas Yong, Katie Fennell
1Department of Biochemistry and Molecular Biology and Feist-Weiller Cancer Center, LSUHSC School of Medicine in Shreveport, Shreveport, Louisiana.
Core binding factor beta (CBFβ) silencing in ovarian cancer cells inhibits growth by increasing autophagy and reactive oxygen species (ROS). Targeting ceramide metabolism with fumonisin B1 partially rescues cell survival and alters sphingolipid levels.
Area of Science:
- Molecular Biology
- Cancer Research
- Cellular Metabolism
Background:
- Core binding factor (CBF) is a transcription factor complex involving RUNX proteins and CBFβ.
- RUNX1 and CBFβ are frequently altered in leukemia, and CBF is implicated in epithelial cancers like ovarian cancer, promoting malignancy and metastasis.
- CBF's role in maintaining cancer phenotypes necessitates understanding its regulatory mechanisms.
Purpose of the Study:
- To investigate the functional consequences of CBFβ reduction in ovarian cancer cells.
- To explore the relationship between CBFβ, autophagy, reactive oxygen species (ROS), and sphingolipid metabolism.
- To determine if modulating ceramide synthesis can impact cell survival in CBFβ-silenced cells.
Main Methods:
- Lentiviral delivery of short hairpin RNA (shRNA) to silence CBFβ expression in an ovarian cancer cell line.
- Assessment of cell growth, cell cycle, apoptosis, autophagy, and ROS production.
- Treatment with fumonisin B1 (FB1), a ceramide synthase inhibitor, and mass spectrometry to analyze sphingolipid levels (ceramide, lactosylceramide).
Main Results:
- CBFβ silencing led to significant growth inhibition without affecting cell cycle or apoptosis, but increased autophagy and ROS.
- FB1 treatment reduced CBFβ-induced autophagy and improved cell survival.
- Mass spectrometry revealed increased ceramide species and decreased lactosylceramide levels in CBFβ-silenced cells.
Conclusions:
- CBF transcriptional pathways are critical for ovarian cancer cell survival.
- CBFβ regulates cellular processes including autophagy and ROS production, partly through sphingolipid metabolism.
- Targeting sphingolipid metabolism represents a potential therapeutic strategy in cancers where CBF is dysregulated.
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