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Updated: May 27, 2025

Engineering Artificial Factors to Specifically Manipulate Alternative Splicing in Human Cells
Published on: April 26, 2017
Splicing factor SF3B4 acts as a switch in cancer cell senescence by regulating p21 mRNA stability
Donghee Kang1, Jee Young Sung2, Hyun Jung Hwang3
1Research Center for Controlling Intercellular Communication (RCIC), College of Medicine, Inha University, Incheon, 22212, South Korea; Program in Biomedical Science & Engineering, Graduate School, Inha University, Incheon, 22212, South Korea; Department of Molecular Medicine, College of Medicine, Inha University, Incheon, 22212, South Korea.
Abstract:
SF3B4, a splicing factor known to regulate mRNA expression and function, is upregulated in various cancers. Despite its potential significance, the mechanisms through which SF3B4 regulates nonsense-mediated mRNA decay (NMD) and cancer cell senescence remain poorly understood. This study explores the underlying mechanisms by which SF3B4 modulates mRNA stability through the NMD pathway and elucidates its role in switching cancer cells between growth and senescence. We demonstrate that SF3B4 deficiency leads to decreased cancer cell proliferation, increased senescence-associated β-galactosidase (SA-β-Gal) activity, p53-independent upregulation of p21 expression, and ultimate induction of cell senescence. We further show that SF3B4 recruits essential NMD factors, including UPF1, MAGOH, and RNPS1, which facilitate mRNA decay of the crucial senescence regulator, p21. Conversely, SF3B4 depletion results in the dissociation of these factors from the 3'UTR of p21 mRNA, thereby enhancing its stability. Collectively, our results suggest that SF3B4 critically regulates p21 expression at the post-transcriptional level, providing insights into the novel role of SF3B4 in regulating p21 mRNA stability, interacting with key NMD factors, and modulating cancer cell senescence.
Insights
SF3B4 splicing factor depletion halts cancer cell growth and induces senescence. It achieves this by stabilizing p21 mRNA via the nonsense-mediated mRNA decay pathway, revealing a novel cancer regulation mechanism.
Area of Science:
- Molecular Biology
- Cancer Research
- Cellular Senescence
Background:
- SF3B4, a splicing factor, is upregulated in cancers.
- Its role in nonsense-mediated mRNA decay (NMD) and cancer cell senescence is unclear.
Purpose of the Study:
- To investigate how SF3B4 influences mRNA stability via NMD.
- To elucidate SF3B4's role in switching cancer cells between proliferation and senescence.
Main Methods:
- Assessed cancer cell proliferation and senescence markers (SA-β-Gal activity).
- Quantified p21 expression levels and localization.
- Investigated interactions between SF3B4, NMD factors (UPF1, MAGOH, RNPS1), and p21 mRNA.
Main Results:
- SF3B4 deficiency decreased proliferation and increased senescence.
- SF3B4 depletion led to p53-independent p21 upregulation and enhanced p21 mRNA stability.
- SF3B4 recruits NMD factors to promote p21 mRNA decay; its absence dissociates these factors.
Conclusions:
- SF3B4 critically regulates p21 expression post-transcriptionally.
- SF3B4 modulates cancer cell senescence by controlling p21 mRNA stability through NMD.
- SF3B4 represents a novel target for cancer therapy by influencing senescence.
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