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Updated: Aug 20, 2025

Testing Targeted Therapies in Cancer using Structural DNA Alteration Analysis and Patient-Derived Xenografts
Published on: July 25, 2020
Proof-of-principle studies on a strategy to enhance nucleotide imbalance specifically in cancer cells
Twana Alkasalias1,2, Juan Zhang1, Harsha Madapura1,3
1Department of Microbiology, Tumor and Cell Biology (MTC), Biomedicum, Karolinska Institutet, Stockholm, Sweden.
Abstract:
Highly specific and potent inhibitors of dihydroorotate dehydrogenase (DHODH), an essential enzyme of the de novo pyrimidine ribonucleotide synthesis pathway, are in clinical trials for autoimmune diseases, viral infections and cancer. However, because DHODH inhibitors (DHODHi) are immunosuppressants they may reduce the anticancer activity of the immune system. Therefore, there may be a need to improve the therapeutic index of DHODHi in cancer patients. The aim of this study was to find strategies to protect activated T cells from DHODHi and to identify cancer types hypersensitive to these inhibitors. First, we observed that like uridine supplementation, adding cytidine to the culture medium protects T cells from DHODH blockage. Next, we identified tumor types with altered expression of pyrimidine ribonucleotide synthesis enzymes. In this regard, we detected that the expression of cytidine deaminase (CDA), which converts cytidine into uridine, is low in an important proportion of cancer cell lines and consistently low in neuroblastoma samples and in cell lines from neuroblastoma and small cell lung carcinoma. This suggested that in the presence of a DHODHi, an excess of cytidine would be deleterious for low CDA expressing cancer cell lines. We show that this was the case (as could be seen almost immediately after treatment) when cells were cultured with fetal bovine serum but, was significantly less evident when cultures contained human serum. One interesting feature of CDA is that aside from acting intracellularly, it is also present in human plasma/serum. Altogether, experiments using recombinant CDA, human serum, pharmacologic inhibition of CDA and T cell/cancer cell co-cultures suggest that the therapeutic index of DHODHi could be improved by selecting patients with low-CDA expressing cancers in combination with strategies to increase cytidine or the cytidine/uridine ratio in the extracellular environment. Collectively, this proof-of-principle study warrants the discovery of agents to deplete extracellular CDA.
Insights
Dihydroorotate dehydrogenase inhibitors (DHODHi) can harm anticancer immunity. Supplementing cytidine protects T cells and may improve DHODHi therapy in cancers with low cytidine deaminase (CDA) expression.
Area of Science:
- Biochemistry
- Immunology
- Oncology
Background:
- Dihydroorotate dehydrogenase (DHODH) is crucial for pyrimidine synthesis, and its inhibitors (DHODHi) are explored for autoimmune diseases, infections, and cancer.
- DHODHi can suppress the immune system, potentially reducing their effectiveness against cancer.
- Improving the therapeutic index of DHODHi in cancer patients is a significant clinical challenge.
Purpose of the Study:
- To identify strategies for protecting activated T cells from DHODHi.
- To pinpoint cancer types that are particularly sensitive to DHODHi.
- To explore methods for enhancing the therapeutic efficacy of DHODHi in cancer treatment.
Main Methods:
- Assessing the protective effects of uridine and cytidine supplementation on T cells against DHODH inhibition.
- Analyzing the expression of pyrimidine synthesis enzymes, specifically cytidine deaminase (CDA), in various cancer cell lines and patient samples.
- Conducting co-culture experiments with T cells and cancer cells under varying serum conditions and CDA activity levels.
Main Results:
- Cytidine supplementation, similar to uridine, effectively protects T cells from DHODH inhibition.
- Low CDA expression was observed in a significant subset of cancer cell lines, including neuroblastoma and small cell lung carcinoma.
- Cancer cells with low CDA expression showed increased sensitivity to DHODHi when cultured with excess cytidine, particularly in fetal bovine serum compared to human serum.
Conclusions:
- The therapeutic index of DHODHi may be enhanced by selecting cancer patients with low CDA expression.
- Strategies involving increased extracellular cytidine or a higher cytidine/uridine ratio could improve DHODHi efficacy.
- Further research into agents that deplete extracellular CDA is warranted for optimizing DHODHi-based cancer therapies.

