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PMID: 23637229 Published · ppublish English

Regulation of Rad17 protein turnover unveils an impact of Rad17-APC cascade in breast carcinogenesis and treatment.

The Journal of biological chemistry ·Vol. 288 ·No. 25 ·2013-09-06

Zhou Zhuan, Jing Chao, Zhang Liyong, Takeo Fujita, Kim Hyun, Huang Yi, Liu Zhihua, Wan Yong

Abstract

Aberrant regulation of DNA damage checkpoint function leads to genome instability that in turn can predispose cellular tissues to become cancerous. Previous works from us and others demonstrated the role of Rad17 in either activation or termination of DNA damage checkpoint function. In the current study, we have revealed the unexpected accumulation of Rad17 in various types of breast cancer cell lines as well as human breast cancer tissues. We observed that Rad17 protein turnover rate in breast epithelial cells is much faster than in breast cancer cells, where the turnover of Rad17 is regulated by the Cdh1/APC pathway. We further observed that Rad17-mediated checkpoint function is modulated by proteolysis. Stabilization of Rad17 disrupts cellular response to chemotherapeutic drug-induced DNA damage and enhances cellular transformation. In addition, manipulation of Rad17 by RNA interference or stabilization of Rad17 significantly sensitize breast cancer cell to various chemotherapeutic drugs. Our present results indicate the manipulation of Rad17 proteolysis could be a valuable approach to sensitize breast cancer cell to the chemotherapeutic treatment despite of the critical role in governing DNA damage response and cellular recovery from genotoxic stress.

Keywords
APC Carcinogenesis Chromosomes/non-histone Chromosomal Proteins DNA Binding Protein Genome Instability Protein Dynamics Protein Stability Protein Turnover Rad17
Article Info
Journal
The Journal of biological chemistry
Abbr.
J Biol Chem
Published
2013-09-06
Indexed
2013-06-24
Updated
2016-11-25
Language
English
Country/Region
United States
NLM ID
2985121R
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