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A Pathway Association Study Tool for GWAS Analyses of Metabolic Pathway Information
Published on: July 1, 2020
Metabolic pathways of L-arginine and therapeutic consequences in tumors
Jarosław Szefel1, Aleksandra Danielak2, Wiesław Janusz Kruszewski1
1Department of Propaedeutics of Oncology, Medical University of Gdansk, Gdansk, Poland; Department of Oncological Surgery, Gdynia Oncology Centre, Gdynia, Poland.
Abstract:
Difference in the metabolism of normal and cancer cells inspires to search for new, more specific and less toxic therapies than those currently used. The development of tumors is conditioned by genetic changes in cancer-transformed cells, immunological tolerance and immunosuppression. At the initial stages of carcinogenesis, the immune system shows anti-tumor activity, however later, cancer disrupts the function of Th1/Th17/Th2 lymphocytes by regulatory T (Treg) cells, tumor-associated macrophages (TAMs), and myeloid-derived suppressor cells (MDSCs) and finally causes immunosuppression. Recently, much attention has been devoted to the influence of l-arginine metabolism disorders on both carcinogenesis and the immune system. l-Arginine is essential for the maturation of the T cell receptor zeta (TCRζ), and its absence deprives T-cells of the ability to interact with tumor antigens. MDSCs deplete l-arginine due to a high expression of arginase 1 (ARG1) and their number increases 4-10 times depending on the type of the cancer. L-Arginine has been shown to be essential for the survival and progression of arginine auxotrophic tumors. However, the progression of arginine non-auxotrophic tumors is independent of exogenous l-arginine, because these tumors have arginine-succinate synthetase (ASS1) activity and are available to produce l-arginine from citrulline. Clinical studies have confirmed the high efficacy of arginine auxotrophic tumors therapy based on the elimination of l-arginine. However, l-arginine supplementation may improve the results of treatment of patients with arginine non-auxotrophic cancer. This review is an attempt to explain the seemingly contradictory results of oncological therapies based on the deprivation or supplementation of l-arginine.
Insights
Disorders in l-arginine metabolism impact cancer and immunity. Therapies targeting l-arginine deprivation or supplementation show efficacy in specific cancer types, influencing treatment outcomes.
Area of Science:
- Oncology
- Immunology
- Metabolic pathways
Background:
- Cancer cells exhibit altered metabolism compared to normal cells, driving the search for targeted therapies.
- Tumor development involves genetic changes, immune tolerance, and immunosuppression mediated by regulatory T cells, tumor-associated macrophages, and myeloid-derived suppressor cells.
- Dysregulation of l-arginine metabolism is increasingly recognized for its role in carcinogenesis and immune modulation.
Purpose of the Study:
- To review the influence of l-arginine metabolism disorders on cancer development and the immune system.
- To explain the contrasting outcomes of cancer therapies based on l-arginine deprivation versus supplementation.
- To highlight the differential requirements of arginine auxotrophic and non-auxotrophic tumors.
Main Methods:
- Literature review of studies on l-arginine metabolism in cancer and immunology.
- Analysis of the role of l-arginine in T-cell function and tumor antigen interaction.
- Examination of the impact of arginase 1 (ARG1) and arginine-succinate synthetase (ASS1) on tumor progression.
Main Results:
- Myeloid-derived suppressor cells deplete l-arginine via arginase 1 (ARG1), suppressing anti-tumor immunity.
- Arginine auxotrophic tumors depend on exogenous l-arginine for survival and progression.
- Arginine non-auxotrophic tumors, possessing arginine-succinate synthetase (ASS1) activity, can synthesize l-arginine and are less dependent on external sources.
Conclusions:
- Therapies eliminating l-arginine are effective against arginine auxotrophic tumors.
- l-Arginine supplementation may benefit patients with arginine non-auxotrophic cancers.
- Understanding tumor-specific l-arginine metabolism is crucial for optimizing cancer treatment strategies.
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