Metabolic reprogramming and epigenetic modifications in cancer: from the impacts and mechanisms to the treatment potential
Метаболическое перепрограммирование и эпигенетические модификации при раке: от воздействия и механизмов к терапевтическому потенциалу
2023-07-02
SCID: 54.1/9bn43k9a
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cancer metabolismchromatin remodelingepigenetic modificationshistone lactylationmetabolic reprogramming
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Abstract (AI)
Metabolic reprogramming and epigenetic modifications are hallmarks of cancer cells. In cancer cells, metabolic pathway activity varies during tumorigenesis and cancer progression, indicating regulated metabolic plasticity. Metabolic changes are often closely related to epigenetic changes, such as alterations in the expression or activity of epigenetically modified enzymes, which may exert a direct or an indirect influence on cellular metabolism. Therefore, exploring the mechanisms underlying epigenetic modifications regulating the reprogramming of tumor cell metabolism is important for further understanding tumor pathogenesis. Here, we mainly focus on the latest studies on epigenetic modifications related to cancer cell metabolism regulations, including changes in glucose, lipid and amino acid metabolism in the cancer context, and then emphasize the mechanisms related to tumor cell epigenetic modifications. Specifically, we discuss the role played by DNA methylation, chromatin remodeling, noncoding RNAs and histone lactylation in tumor growth and progression. Finally, we summarize the prospects of potential cancer therapeutic strategies based on metabolic reprogramming and epigenetic changes in tumor cells.
Key Findings
1
Cancer cells exhibit regulated metabolic plasticity, with pathway activity changing during tumorigenesis and cancer progression.
2
DNA methylation, chromatin remodeling, noncoding RNAs, and histone lactylation are identified as key mechanisms linking epigenetic modifications with cancer metabolism.
3
Metabolic reprogramming is closely interconnected with epigenetic alterations, including changes in epigenetically modified enzymes that can directly or indirectly affect cellular metabolism.
4
Targeting metabolic reprogramming and epigenetic alterations is highlighted as a potential basis for developing cancer therapies.
5
The review examines epigenetic regulation of glucose, lipid, and amino acid metabolism in cancer and its contribution to tumor growth and progression.
Research Object
Cancer cells and tumors
Research Subject
The mechanisms and therapeutic potential of the interplay between metabolic reprogramming and epigenetic modifications, including effects on glucose, lipid, and amino acid metabolism and tumor growth and progression
Publication Details
Publication Date
2023-07-02
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