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Enzymes in Metabolic Anticancer Therapy
Maristella Maggi1, Claudia Scotti2
1Department of Molecular Medicine, Unit of Immunology and General Pathology, University of Pavia, Pavia, Italy. maristella.maggi01@universitadipavia.it.
Abstract:
Cancer treatment has greatly improved over the last 50 years, but it remains challenging in several cases. Useful therapeutic targets are normally unique peculiarities of cancer cells that distinguish them from normal cells and that can be tackled with appropriate drugs. It is now known that cell metabolism is rewired during tumorigenesis and metastasis as a consequence of oncogene activation and oncosuppressors inactivation, leading to a new cellular homeostasis typically directed towards anabolism. Because of these modifications, cells can become strongly or absolutely dependent on specific substrates, like sugars, lipids or amino acids. Cancer addictions are a relevant target for therapy, as removal of an essential substrate can lead to their selective cell-cycle arrest or even to cell death, leaving normal cells untouched. Enzymes can act as powerful agents in this respect, as demonstrated by asparaginase, which has been included in the treatment of Acute Lymphoblastic Leukemia for half a century. In this review, a short outline of cancer addictions will be provided, focusing on the main cancer amino acid dependencies described so far. Therapeutic enzymes which have been already experimented at the clinical level will be discussed, along with novel potential candidates that we propose as new promising molecules. The intrinsic limitations of their present molecular forms, along with molecular engineering solutions to explore, will also be presented.
Insights
Cancer cells exhibit unique metabolic dependencies, termed "cancer addictions," often on specific amino acids. Targeting these vulnerabilities with therapeutic enzymes offers a promising strategy for selective cancer treatment with minimal impact on healthy cells.
Area of Science:
- Biochemistry
- Oncology
- Molecular Biology
Background:
- Cancer cells reprogram metabolism for growth and survival.
- This metabolic rewiring creates dependencies on specific nutrients like amino acids.
- These dependencies, or
Purpose of the Study:
- To review cancer's amino acid dependencies.
- To discuss existing and novel therapeutic enzymes targeting these dependencies.
- To explore limitations and engineering solutions for enzyme-based cancer therapies.
Main Methods:
- Literature review of cancer metabolism and enzyme therapeutics.
- Analysis of clinical trial data for therapeutic enzymes.
- Identification of potential novel enzyme candidates and engineering strategies.
Main Results:
- Cancer cells exhibit specific amino acid dependencies.
- Therapeutic enzymes like asparaginase are clinically validated.
- Several novel enzyme candidates show therapeutic potential.
Conclusions:
- Targeting cancer's amino acid dependencies with enzymes is a viable therapeutic strategy.
- Molecular engineering can overcome limitations of current enzyme therapeutics.
- Further research into novel enzyme candidates and their optimization is warranted.
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Enzymes
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