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Updated: Apr 24, 2026

Extraction of Histones from Clinical Specimens for Epigenetic Profiling by Mass Spectrometry
Published on: November 21, 2025
Compendium of aberrant DNA methylation and histone modifications in cancer
Naoko Hattori1, Toshikazu Ushijima1
1Division of Epigenomics, National Cancer Center Research Institute, 5-1-1 Tsukiji, Chuo-ku, Tokyo 104-0045, Japan.
Abstract:
Epigenetics now refers to the study or research field related to DNA methylation and histone modifications. Historically, global DNA hypomethylation was first revealed in 1983, and, after a decade, silencing of a tumor suppressor gene by regional DNA hypermethylation was reported. After the proposal of the histone code in the 2000s, alterations of histone methylation were also identified in cancers. Now, it is established that aberrant epigenetic alterations are involved in cancer development and progression, along with mutations and chromosomal losses. Recent cancer genome analyses have revealed a large number of mutations of epigenetic modifiers, supporting their important roles in cancer pathogenesis. Taking advantage of the reversibility of epigenetic alterations, drugs targeting epigenetic regulators and readers have been developed for restoration of normal pattern of the epigenome, and some have already demonstrated clinical benefits. In addition, DNA methylation of specific marker genes can be used as a biomarker for cancer diagnosis, including risk diagnosis, detection of cancers, and pathophysiological diagnosis. In this paper, we will summarize the major concepts of cancer epigenetics, placing emphasis on history.
Insights
Epigenetics, the study of DNA methylation and histone modifications, plays a crucial role in cancer development. Aberrant epigenetic alterations are now recognized as key drivers in cancer pathogenesis and offer therapeutic targets.
Area of Science:
- Molecular Biology
- Genetics
- Oncology
Background:
- Epigenetics involves DNA methylation and histone modifications.
- Historically, DNA hypomethylation and hypermethylation were observed in cancers.
- The histone code hypothesis emerged, linking histone methylation to cancer.
Observation:
- Aberrant epigenetic alterations are integral to cancer development and progression.
- Mutations in epigenetic modifiers are frequently identified in cancer genomes.
- Epigenetic changes complement genetic mutations and chromosomal losses in cancer.
Findings:
- Epigenetic alterations are established drivers of cancer pathogenesis.
- Drugs targeting epigenetic regulators show clinical benefits by restoring normal epigenome patterns.
- Specific DNA methylation markers are valuable for cancer diagnosis and risk assessment.
Implications:
- Epigenetic modifications are critical targets for cancer therapy.
- Epigenetic biomarkers can significantly improve cancer detection and diagnosis.
- Understanding cancer epigenetics history is vital for future research and treatment development.
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