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Updated: Sep 4, 2026

Detection of Alternative Splicing During Epithelial-Mesenchymal Transition
Published on: October 9, 2014
The role of RNA alternative splicing in regulating cancer metabolism
Itamar Kozlovski1, Zahava Siegfried1, Adi Amar-Schwartz1
1Department of Biochemistry and Molecular Biology, IMRIC, Hebrew University-Hadassah Medical School, Ein Karem, 91120, Jerusalem, Israel.
Abstract:
Tumor cells alter their metabolism by a wide array of mechanisms to promote growth and proliferation. Dysregulated expression and/or somatic mutations of key components of the glycolytic pathway/TCA cycle as well as other metabolic pathways allow tumor cells to improve their ability to survive harsh conditions such as hypoxia and the presence of reactive oxygen species, as well as the ability to obtain nutrients to increase lipids, protein, and nucleic acids biogenesis. Approximately 95% of the human protein encoding genes undergo alternative splicing (AS), a regulated process of gene expression that greatly diversifies the proteome by creating multiple proteins from a single gene. In recent years, a growing body of evidence suggests that unbalanced AS, the formation of certain pro-tumorigenic isoforms and the reduction of anti-tumorigenic isoforms, is implicated in a variety of cancers. It is becoming increasingly clear that cancer-associated AS contributes to increased growth and proliferation, partially due to effects on metabolic reprogramming. Here, we summarize the known roles of AS in regulating cancer metabolism. We present evidence supporting the idea that AS, in many types of cancer, acts as a molecular switch that alters metabolism to drive tumorigenesis. We propose that the elucidation of misregulated AS and its downstream effects on cancer metabolism emphasizes the need for new therapeutic approaches aiming to modulate the splicing machinery to selectively target cancer cells.
Insights
Alternative splicing (AS) reprogramming in cancer metabolism drives tumor growth. Targeting AS offers a novel therapeutic strategy for cancer treatment by modulating cancer cell metabolism.
Area of Science:
- Molecular Biology
- Cancer Biology
- Metabolic Engineering
Background:
- Tumor cells exhibit altered metabolism for growth and survival.
- Alternative splicing (AS) diversifies the proteome, with dysregulation implicated in cancer.
- Unbalanced AS contributes to tumorigenesis by affecting metabolic reprogramming.
Purpose of the Study:
- To summarize the roles of AS in regulating cancer metabolism.
- To present evidence of AS as a driver of metabolic reprogramming in cancer.
- To highlight AS as a potential therapeutic target for cancer treatment.
Main Methods:
- Literature review and synthesis of existing research on alternative splicing and cancer metabolism.
- Analysis of evidence linking alternative splicing events to metabolic pathways in various cancers.
- Discussion of the implications of alternative splicing dysregulation for cancer progression.
Main Results:
- Alternative splicing significantly impacts cancer cell metabolism, promoting growth and proliferation.
- Specific pro-tumorigenic and anti-tumorigenic isoforms generated by AS influence metabolic pathways.
- AS acts as a molecular switch, altering cellular metabolism to drive tumorigenesis across multiple cancer types.
Conclusions:
- Alternative splicing plays a critical role in cancer metabolic reprogramming.
- Targeting the splicing machinery offers a promising avenue for selective cancer therapy.
- Further research into AS-mediated metabolic alterations is crucial for developing novel anti-cancer strategies.
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