Skip to main content

Main menu

  • Home
  • Current Issue
  • Archive
  • Info for
    • Authors
    • Editorial Policies
    • Subscribers
    • Advertisers
    • Editorial Board
    • Special Issues 2025
  • Journal Metrics
  • Other Publications
    • In Vivo
    • Cancer Genomics & Proteomics
    • Cancer Diagnosis & Prognosis
  • More
    • IIAR
    • Conferences
    • 2008 Nobel Laureates
  • About Us
    • General Policy
    • Contact
  • Other Publications
    • Anticancer Research
    • In Vivo
    • Cancer Genomics & Proteomics

User menu

  • Register
  • Subscribe
  • My alerts
  • Log in
  • My Cart

Search

  • Advanced search
Anticancer Research
  • Other Publications
    • Anticancer Research
    • In Vivo
    • Cancer Genomics & Proteomics
  • Register
  • Subscribe
  • My alerts
  • Log in
  • My Cart
Anticancer Research

Advanced Search

  • Home
  • Current Issue
  • Archive
  • Info for
    • Authors
    • Editorial Policies
    • Subscribers
    • Advertisers
    • Editorial Board
    • Special Issues 2025
  • Journal Metrics
  • Other Publications
    • In Vivo
    • Cancer Genomics & Proteomics
    • Cancer Diagnosis & Prognosis
  • More
    • IIAR
    • Conferences
    • 2008 Nobel Laureates
  • About Us
    • General Policy
    • Contact
  • Visit us on Facebook
  • Follow us on Linkedin
Research ArticleExperimental Studies

5-Azacytidine (5-aza) Induces p53-associated Cell Death Through Inhibition of DNA Methyltransferase Activity in Hep3B and HT-29 Cells

DAE-YEON KIM, RANGYEON LEE, HEE-TAE CHEONG, CHANG-SIX RA, KI-JONG RHEE, JEONGHO PARK and BAE DONG JUNG
Anticancer Research February 2023, 43 (2) 639-644; DOI: https://doi.org/10.21873/anticanres.16200
DAE-YEON KIM
1College of Veterinary Medicine & Institute of Veterinary Science, Kangwon National University, Chuncheon, Republic of Korea;
  • Find this author on Google Scholar
  • Find this author on PubMed
  • Search for this author on this site
RANGYEON LEE
1College of Veterinary Medicine & Institute of Veterinary Science, Kangwon National University, Chuncheon, Republic of Korea;
  • Find this author on Google Scholar
  • Find this author on PubMed
  • Search for this author on this site
HEE-TAE CHEONG
1College of Veterinary Medicine & Institute of Veterinary Science, Kangwon National University, Chuncheon, Republic of Korea;
  • Find this author on Google Scholar
  • Find this author on PubMed
  • Search for this author on this site
CHANG-SIX RA
2College of Animal Life Sciences, Kangwon National University, Chuncheon, Republic of Korea;
  • Find this author on Google Scholar
  • Find this author on PubMed
  • Search for this author on this site
KI-JONG RHEE
3Department of Biomedical Laboratory Science, College of Health Sciences, Yonsei University at Wonju, Wonju, Republic of Korea
  • Find this author on Google Scholar
  • Find this author on PubMed
  • Search for this author on this site
JEONGHO PARK
1College of Veterinary Medicine & Institute of Veterinary Science, Kangwon National University, Chuncheon, Republic of Korea;
  • Find this author on Google Scholar
  • Find this author on PubMed
  • Search for this author on this site
  • For correspondence: jhp@kangwon.ac.kr
BAE DONG JUNG
1College of Veterinary Medicine & Institute of Veterinary Science, Kangwon National University, Chuncheon, Republic of Korea;
  • Find this author on Google Scholar
  • Find this author on PubMed
  • Search for this author on this site
  • For correspondence: bdjung@kangwon.ac.kr
  • Article
  • Figures & Data
  • Info & Metrics
  • PDF
Loading

Abstract

Background/Aim: DNA methylation regulates the expression of genes that control mechanisms of cell death. TP53 gene expression inhibits tumorigenesis, and its action is closely associated with cell death. 5-Azacytidine (5-aza), increases the expression of the TP53 gene by inhibiting DNA methyltransferase. Materials and Methods: Using 5-aza, we induced DNA hypomethylation in p53-null and p53-expressing cancer cell lines and investigated potential mechanisms of cancer cell death. Results: TP53 expression promoted cell death. Notably, methylation-specific PCR (MSP) and bisulfite sequencing revealed more methylation sites at the TP53 promoter region in p53-null cells than in p53-expressing cells. Conclusion: This study suggests a novel mechanism of tumorigenesis regulated by p53 expression.

Key Words:
  • Cell death
  • 5-azacytidine
  • Cancer
  • p53
  • DNA methylation
  • Received November 17, 2022.
  • Revision received December 29, 2022.
  • Accepted December 30, 2022.
  • Copyright © 2023 International Institute of Anticancer Research (Dr. George J. Delinasios), All rights reserved.
View Full Text

This article requires a subscription to view the full text. If you have a subscription you may use the login form below to view the article. Access to this article can also be purchased.

Log in using your username and password

Forgot your user name or password?

Purchase access

You may purchase access to this article. This will require you to create an account if you don't already have one.

patientACCESS

patientACCESS - Patients desiring access to articles
PreviousNext
Back to top

In this issue

Anticancer Research: 43 (2)
Anticancer Research
Vol. 43, Issue 2
February 2023
  • Table of Contents
  • Table of Contents (PDF)
  • About the Cover
  • Index by author
  • Back Matter (PDF)
  • Ed Board (PDF)
  • Front Matter (PDF)
Print
Download PDF
Article Alerts
Sign In to Email Alerts with your Email Address
Email Article

Thank you for your interest in spreading the word on Anticancer Research.

NOTE: We only request your email address so that the person you are recommending the page to knows that you wanted them to see it, and that it is not junk mail. We do not capture any email address.

Enter multiple addresses on separate lines or separate them with commas.
5-Azacytidine (5-aza) Induces p53-associated Cell Death Through Inhibition of DNA Methyltransferase Activity in Hep3B and HT-29 Cells
(Your Name) has sent you a message from Anticancer Research
(Your Name) thought you would like to see the Anticancer Research web site.
CAPTCHA
This question is for testing whether or not you are a human visitor and to prevent automated spam submissions.
14 + 1 =
Solve this simple math problem and enter the result. E.g. for 1+3, enter 4.
Citation Tools
5-Azacytidine (5-aza) Induces p53-associated Cell Death Through Inhibition of DNA Methyltransferase Activity in Hep3B and HT-29 Cells
DAE-YEON KIM, RANGYEON LEE, HEE-TAE CHEONG, CHANG-SIX RA, KI-JONG RHEE, JEONGHO PARK, BAE DONG JUNG
Anticancer Research Feb 2023, 43 (2) 639-644; DOI: 10.21873/anticanres.16200

Citation Manager Formats

  • BibTeX
  • Bookends
  • EasyBib
  • EndNote (tagged)
  • EndNote 8 (xml)
  • Medlars
  • Mendeley
  • Papers
  • RefWorks Tagged
  • Ref Manager
  • RIS
  • Zotero
Reprints and Permissions
Share
5-Azacytidine (5-aza) Induces p53-associated Cell Death Through Inhibition of DNA Methyltransferase Activity in Hep3B and HT-29 Cells
DAE-YEON KIM, RANGYEON LEE, HEE-TAE CHEONG, CHANG-SIX RA, KI-JONG RHEE, JEONGHO PARK, BAE DONG JUNG
Anticancer Research Feb 2023, 43 (2) 639-644; DOI: 10.21873/anticanres.16200
Twitter logo Facebook logo Mendeley logo
  • Tweet Widget
  • Facebook Like
  • Google Plus One

Jump to section

  • Article
    • Abstract
    • Materials and Methods
    • Results
    • Discussion
    • Acknowledgements
    • Footnotes
    • References
  • Figures & Data
  • Info & Metrics
  • PDF

Related Articles

  • No related articles found.
  • PubMed
  • Google Scholar

Cited By...

  • No citing articles found.
  • Google Scholar

More in this TOC Section

  • Cytotoxic and Metalloproteinase-inhibitory Effects of Ellagic Acid Against Oral Squamous Cell Carcinoma
  • Artogomezianone Inhibits EGFR and Promotes Apoptosis in Non-small Cell Lung Cancer Cells
  • Resveratrol Derivatives Inhibit Pro-survival Akt Signaling Pathway in Lung Cancer
Show more Experimental Studies

Similar Articles

Keywords

  • cell death
  • 5-azacytidine
  • cancer
  • p53
  • DNA methylation
Anticancer Research

© 2025 Anticancer Research

Powered by HighWire