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PMID: 24490130 Published · epublish English

NFκB mediates cisplatin resistance through histone modifications in head and neck squamous cell carcinoma (HNSCC).

FEBS open bio ·Vol. 4 ·2014-02-03

Almeida Luciana O, Abrahao Aline C, Rosselli-Murai Luciana K, Giudice Fernanda S, Zagni Chiara, Leopoldino Andreia M, Squarize Cristiane H, Castilho Rogerio M

Abstract

Cisplatin-based chemotherapy is the standard treatment of choice for head and neck squamous cell carcinoma (HNSCC). The efficiency of platinum-based therapies is directly influenced by the development of tumor resistance. Multiple signaling pathways have been linked to tumor resistance, including activation of nuclear factor kappa B (NFκB). We explore a novel mechanism by which NFκB drives HNSCC resistance through histone modifications. Post-translational modification of histones alters chromatin structure, facilitating the binding of nuclear factors that mediate DNA repair, transcription, and other processes. We found that chemoresistant HNSCC cells with active NFκB signaling respond to chemotherapy by reducing nuclear BRCA1 levels and by promoting histone deacetylation (chromatin compaction). Activation of this molecular signature resulted in impaired DNA damage repair, prolonged accumulation of histone γH2AX and increased genomic instability. We found that pharmacological induction of histone acetylation using HDAC inhibitors prevented NFκB-induced cisplatin resistance. Furthermore, silencing NFκB in HNSCC induced acetylation of tumor histones, resulting in reduced chemoresistance and increased cytotoxicity following cisplatin treatment. Collectively, these findings suggest that epigenetic modifications of HNSCC resulting from NFκB-induced histone modifications constitute a novel molecular mechanism responsible for chemoresistance in HNSCC. Therefore, targeted inhibition of HDAC may be used as a viable therapeutic strategy for disrupting tumor resistance caused by NFκB.

Keywords
BRCA1 breast cancer type 1 BSA bovine serum albumin Chemoresistance Chromatin remodeling DDR DNA damage repair DMSO dimethyl sulfoxide DSB double strand breaks HDAC inhibitor HDAC histone deacetylases HNSCC HNSCC head and neck squamous cell carcinoma Histone acetylation IC50 half maximal inhibitory concentration IKKα IκB kinase alpha IKKβ IκB kinase beta MTS non-radioactive cell proliferation assay NFκB NFκB nuclear factor kappa B NIH National Institutes of Health TSA trichostatin A siRNA small interfering RNA
Article Info
Journal
FEBS open bio
Abbr.
FEBS Open Bio
Published
2014-02-03
Indexed
2014-02-03
Updated
2016-10-25
Language
English
Country/Region
England
NLM ID
101580716
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