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Updated: Jul 2, 2025

Tumor Engraftment in a Xenograft Mouse Model of Human Mantle Cell Lymphoma
Published on: March 30, 2018
Selective pharmacologic targeting of CTPS1 shows single-agent activity and synergizes with BCL2 inhibition in
Romane Durand1, Céline Bellanger1, Charlotte Kervoëlen1
1Nantes Université, Inserm, CNRS, Université d'Angers, CRCI2NA, Nantes.
Abstract:
Innovative therapeutic strategies have emerged over the past decade to improve outcomes for most lymphoma patients. Nevertheless, the aggressive presentation seen in high-risk mantle cell lymphoma (MCL) patients remains an unmet medical need. The highly proliferative cells that characterize these tumors depend on nucleotide synthesis to ensure high DNA replication and RNA synthesis. To take advantage of this vulnerability, STP-B, a clinically available small molecule selectively targeting CTP synthase 1 (CTPS1) has been recently developed. CTPS1 is a key enzyme of the pyrimidine synthesis pathway mediated through its unique ability to provide enough CTP in highly proliferating cells. Herein, we demonstrated that CTPS1 was expressed in all MCL cells, and that its high expression was associated with unfavorable outcomes for patients treated with chemotherapy. Using aggressive MCL models characterized by blastoid morphology, TP53 mutation or polyresistance to targeted therapies, we showed that STP-B was highly effective at nanomolar concentrations in vitro and in vivo, irrespective of these high-risk features. Inhibition of CTPS1 rapidly leads to cell cycle arrest in early S-phase accompanied by inhibition of translation, including of the anti-apoptotic protein MCL1. Consequently, CTPS1 inhibition induced synergistic cell death in combination with the selective BCL2 inhibitor venetoclax, both in vitro and in vivo. Overall, our study identified CTPS1 as a promising target for MCL patients and provided a mechanism-based combination with the BCL2 inhibitor venetoclax for the design of future chemotherapy-free treatment regimens to overcome resistance.
Insights
High-risk mantle cell lymphoma (MCL) cells depend on CTPS1 for growth. Targeting CTPS1 with STP-B shows promise, especially when combined with venetoclax for novel chemotherapy-free treatments.
Area of Science:
- Oncology
- Molecular Biology
- Drug Discovery
Background:
- High-risk mantle cell lymphoma (MCL) presents an unmet therapeutic need.
- MCL cells rely on nucleotide synthesis for rapid proliferation.
- CTP synthase 1 (CTPS1) is crucial for pyrimidine synthesis in proliferating cells.
Purpose of the Study:
- To evaluate CTPS1 as a therapeutic target in MCL.
- To assess the efficacy of STP-B, a CTPS1 inhibitor, in aggressive MCL models.
- To explore combination therapy with venetoclax.
Main Methods:
- Assessed CTPS1 expression in MCL patient samples.
- Utilized aggressive MCL cell lines and in vivo models.
- Investigated the effects of STP-B and venetoclax individually and in combination.
- Analyzed cell cycle, translation, and apoptosis.
Main Results:
- CTPS1 is expressed in all MCL cells, with high levels correlating with poor chemotherapy outcomes.
- STP-B demonstrated potent in vitro and in vivo efficacy against aggressive MCL models.
- CTPS1 inhibition caused S-phase arrest and suppressed MCL1 translation.
- Combination of STP-B and venetoclax showed synergistic cell death.
Conclusions:
- CTPS1 is a viable therapeutic target for MCL.
- STP-B is effective in high-risk MCL, regardless of specific mutations or resistance profiles.
- Combining CTPS1 inhibition with BCL2 inhibition offers a potential chemotherapy-free treatment strategy for MCL.
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