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Continuous Fluorescence-Based Endonuclease-Coupled DNA Methylation Assay to Screen for DNA Methyltransferase Inhibitors
Published on: August 5, 2022
DNA hypomethylation as Achilles' heel of tumorigenesis: a working hypothesis
1Institute of Molecular Biology and Genetics of NAS of Ukraine, Department of Molecular Genetics, 150 Zabolotny Street, Kyiv 03143, Ukraine. l.p.shvachko@imbg.org.ua
Abstract:
There are at least two findings that show DNA hypomethylation plays a key role in carcinogenesis. The first major evidence is that DNA hypomethylation induces target chromosomal and genomic instability with cancer manifestations. The second reason that cancer progression is associated with deepening DNA hypomethylation. Nevertheless, the evolution of this crucial epigenomic alteration in the somatic cellular malignant transformation remains unclear. From some of the experimental data to be present, a key role of DNA hypomethylation in early development of epigenetic somatic cancer biology is proposed. We have observed the significant increasing of genome ploidy at the level of peripheral blood lymphocytes taken from the patients with different solid carcinomas. Similarly, 5-azacytidine demethylating DNA treatment of cultured healthy lymphocytes induces increased nuclear DNA content. We argue that somatic lymphocyte ploidy induced by genomic DNA hypomethylation during carcinogenesis is related to global demethylation and decondensation of mitotic constitutive pericentromeric heterochromatin. This results in disturbances of pericentromeric heterochromatin that are expressed in nuclear heterochromatinization on the basis of extrachromosomal chromomerization. On the basis of literature searches and experimental findings, it is proposed that DNA hypomethylation plays the role of an initiator in epigenetic somatic cancer biology.
Insights
DNA hypomethylation is a key initiator in epigenetic cancer biology, driving genomic instability and cancer progression. This study proposes its early role in somatic malignant transformation.
Area of Science:
- Epigenetics
- Cancer Biology
- Genomics
Background:
- DNA hypomethylation is linked to carcinogenesis, inducing genomic instability and progressing with cancer.
- The precise role of DNA hypomethylation in early somatic malignant transformation remains unclear.
Purpose of the Study:
- To investigate the role of DNA hypomethylation as an initiator in epigenetic somatic cancer biology.
- To explore the relationship between DNA hypomethylation, genomic instability, and cellular changes during carcinogenesis.
Main Methods:
- Observational analysis of genome ploidy in peripheral blood lymphocytes from cancer patients.
- Experimental induction of DNA hypomethylation in cultured lymphocytes using 5-azacytidine.
- Literature review and experimental data synthesis.
Main Results:
- Increased genome ploidy was observed in lymphocytes from patients with solid carcinomas.
- Treatment of healthy lymphocytes with 5-azacytidine led to increased nuclear DNA content.
- Somatic lymphocyte ploidy is linked to global DNA hypomethylation and pericentromeric heterochromatin decondensation.
Conclusions:
- DNA hypomethylation is proposed as an initiator in epigenetic somatic cancer biology.
- Hypomethylation-induced ploidy may result from disturbances in pericentromeric heterochromatin and extrachromosomal chromomerization.
- Further research into the early epigenomic events of carcinogenesis is warranted.
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