Publication:

Low-dose Arsenic induces chemotherapy protection via p53/NF-κB-mediated metabolic regulation

Loading...
Thumbnail Image

Open/View Files

Date

2015

Published Version

Journal Title

Journal ISSN

Volume Title

Publisher

The Harvard community has made this article openly available. Please share how this access benefits you.

Research Projects

Organizational Units

Journal Issue

Citation

Ganapathy, Suthakar, Shaowen Xiao, Seog-Jin Seo, Rajuli Lall, Mei Yang, Teng Xu, Hang Su, Miriam Shadfan, Chul S. Ha, and Zhi-Min Yuan. 2015. “Low-dose Arsenic induces chemotherapy protection via p53/NF-κB-mediated metabolic regulation.” Oncogene 33 (11): 1359-1366. doi:10.1038/onc.2013.81. http://dx.doi.org/10.1038/onc.2013.81.

Abstract

Most chemotherapeutical drugs kill cancer cells chiefly by inducing DNA damage, which unfortunately also causes undesirable injuries to normal tissues, mainly due to p53 activation. We report a novel strategy of normal tissue-protection that involves p53/NF-κB coordinated metabolic regulation. Pretreatment of untransformed cells with low doses of arsenic induced concerted p53 suppression and NF-κB activation, which elicited a marked induction of glycolysis. Significantly, this metabolic shift provided cells effective protection against cytotoxic chemotherapy, coupling the metabolic pathway to cellular resistance. Using both in vitro and in vivo models, we demonstrated an absolute requirement of functional p53 in arsenic-mediated protection. Consistently, a brief arsenic-pretreatment selectively protected only normal tissues but not tumors from toxicity of chemotherapy. An indispensable role of glycolysis in protecting normal tissues was demonstrated by using an inhibitor of glycolysis, 2-deoxyglucose, which almost totally abolished low-dose arsenic-mediated protection. Together, our work demonstrates that low-dose arsenic renders normal cells and tissues resistance to chemotherapy-induced toxicity by inducting glycolysis.

Description

Research Data

Keywords

Chemoprotection, p53, NF-κB, Metabolism, Colon cancer

Terms of Use

This article is made available under the terms and conditions applicable to Other Posted Material (LAA), as set forth at Terms of Service

Endorsement

Review

Supplemented By

Related Stories