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Updated: Feb 1, 2026

Single Molecule Fluorescence Energy Transfer Study of Ribosome Protein Synthesis
Published on: July 6, 2021
Targeting the Ribosome Biogenesis Key Molecule Fibrillarin to Avoid Chemoresistance
Btissame El Hassouni1, Dzjemma Sarkisjan1, J Chris Vos2
1Department of Medical Oncology, VU University Medical Center- Cancer Center Amsterdam, De Boelelaan 1118, 1081 HV Amsterdam, Netherlands.
Background:
Inherent or acquired chemo resistance in cancer patients has been a perpetual limitation in cancer treatment. Expanding knowledge on essential cellular processes opens a new window for therapeutic targeting. Ribosome biogenesis is a process that shows potential due to its fundamental role in cell development and contribution to tumorigenesis as a result of its upregulation. Inhibiting components of ribosome biogenesis has been explored and has shown interesting results. Yet, an important key component, methyltransferase Fibrillarin (FBL), which influences both the abundance and composition of ribosomes, has not been exploited thus far.
Methods:
In this literature review, we describe relevant aspects of ribosome biogenesis in cancer to emphasize the potential of FBL as a therapeutic target, in order to lower the genotoxic effects of anti-cancer treatment.
Results:
Remarkably, the amplification of the 19q13 cytogenetic band, including the gene coding for FBL, correlated to cell viability and resistance in pancreatic cells as well as to a trend toward a shorter survival in pancreatic cancer patients. Targeting ribosome biogenesis, more specifically compared to the secondary effects of chemotherapeutics such as 5-fluorouracil or oxaliplatin, has been achieved by compound CX-5461. The cell dependent activity of this Pol I inhibitor has been reported in ovarian cancer, melanoma and leukemia models with active or mutated p53 status, presenting a promising mechanism to evade p53 resistance.
Conclusion:
Targeting critical ribosome biogenesis components in order to decrease the genotoxic activity in cancer cell looks promising. Hence, we believe that targeting key protein rRNA methyltransferase FBL shows great potential, due to its pivotal role in ribosome biogenesis, its correlation to an improved survival rate at low expression in breast cancer patients and its association with p53.
Insights
Fibrillarin (FBL), a key protein in ribosome biogenesis, shows promise as a therapeutic target to overcome chemoresistance and reduce genotoxic effects in cancer treatment. Targeting FBL may improve patient survival and evade p53 resistance mechanisms.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Therapeutics
Background:
- Chemoresistance remains a significant challenge in cancer treatment.
- Ribosome biogenesis, often upregulated in tumors, presents a potential therapeutic target.
- Fibrillarin (FBL), a crucial methyltransferase in ribosome biogenesis, has been underexplored as a therapeutic target.
Purpose of the Study:
- To review ribosome biogenesis in cancer.
- To highlight Fibrillarin (FBL) as a potential therapeutic target.
- To explore FBL's role in mitigating anti-cancer treatment genotoxicity.
Main Methods:
- Literature review of ribosome biogenesis in cancer.
- Analysis of FBL's role in tumorigenesis and chemoresistance.
- Examination of FBL-targeting strategies and their implications.
Main Results:
- FBL gene amplification correlates with pancreatic cancer cell viability and resistance.
- The compound CX-5461, a Pol I inhibitor, targets ribosome biogenesis and shows activity in various cancer models.
- CX-5461 demonstrates potential in overcoming p53 resistance.
Conclusions:
- Targeting ribosome biogenesis components can decrease genotoxic activity in cancer cells.
- Fibrillarin (FBL) is a promising therapeutic target due to its central role in ribosome biogenesis.
- FBL's association with patient survival and p53 pathways warrants further investigation.
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