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Updated: Apr 30, 2026

Engineering Artificial Factors to Specifically Manipulate Alternative Splicing in Human Cells
Published on: April 26, 2017
The splicing factor FUBP1 is required for the efficient splicing of oncogene MDM2 pre-mRNA
Aishwarya G Jacob1, Ravi K Singh2, Fuad Mohammad3
1From the Center for Childhood Cancer, Research Institute at Nationwide Children's Hospital, Columbus, Ohio 43205 and the Department of Pediatrics, Molecular, Cellular and Developmental Biology Program, and Center for RNA Biology, Wexner Medical Center, The Ohio State University, Columbus, Ohio 43210.
Abstract:
Alternative splicing of the oncogene MDM2 is a phenomenon that occurs in cells in response to genotoxic stress and is also a hallmark of several cancer types with important implications in carcinogenesis. However, the mechanisms regulating this splicing event remain unclear. Previously, we uncovered the importance of intron 11 in MDM2 that affects the splicing of a damage-responsive MDM2 minigene. Here, we have identified discrete cis regulatory elements within intron 11 and report the binding of FUBP1 (Far Upstream element-Binding Protein 1) to these elements and the role it plays in MDM2 splicing. Best known for its oncogenic role as a transcription factor in the context of c-MYC, FUBP1 was recently described as a splicing regulator with splicing repressive functions. In the case of MDM2, we describe FUBP1 as a positive splicing regulatory factor. We observed that blocking the function of FUBP1 in in vitro splicing reactions caused a decrease in splicing efficiency of the introns of the MDM2 minigene. Moreover, knockdown of FUBP1 in cells induced the formation of MDM2-ALT1, a stress-induced splice variant of MDM2, even under normal conditions. These results indicate that FUBP1 is also a strong positive splicing regulator that facilitates efficient splicing of the MDM2 pre-mRNA by binding its introns. These findings are the first report describing the regulation of alternative splicing of MDM2 mediated by the oncogenic factor FUBP1.
Insights
Far Upstream element-Binding Protein 1 (FUBP1) positively regulates MDM2 alternative splicing. Blocking FUBP1 function impairs MDM2 splicing and promotes stress-induced variants, revealing FUBP1
Area of Science:
- Molecular Biology
- Cancer Research
- Gene Regulation
Background:
- Alternative splicing of the oncogene MDM2 is linked to genotoxic stress and cancer.
- Mechanisms controlling MDM2 alternative splicing remain largely unknown.
- Intron 11 of MDM2 plays a role in damage-responsive splicing.
Purpose of the Study:
- To identify cis-regulatory elements in MDM2 intron 11.
- To investigate the role of Far Upstream element-Binding Protein 1 (FUBP1) in MDM2 splicing.
Main Methods:
- In vitro splicing assays.
- Identification of cis-regulatory elements within MDM2 intron 11.
- FUBP1 binding assays.
- Cellular knockdown of FUBP1.
- Analysis of MDM2 splice variants.
Main Results:
- Discrete cis-regulatory elements were identified in MDM2 intron 11.
- FUBP1 binds to these elements and acts as a positive splicing regulator for MDM2.
- Blocking FUBP1 function in vitro decreased MDM2 minigene splicing efficiency.
- FUBP1 knockdown in cells induced the MDM2-ALT1 splice variant under normal conditions.
Conclusions:
- FUBP1 is a positive splicing regulator that facilitates efficient MDM2 pre-mRNA splicing.
- This study is the first to report FUBP1-mediated regulation of MDM2 alternative splicing.
- Findings implicate FUBP1 in the control of MDM2 splicing, with potential implications for carcinogenesis.
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