SET overexpression decreases cell detoxification efficiency: ALDH2 and GSTP1 are downregulated, DDR is impaired and DNA damage accumulates


Autoria(s): Almeida, Luciana O.; Goto, Renata N.; Pestana, Cezar R.; Uyemura, Sergio A.; Gutkind, Silvio; Curti, Carlos; Leopoldino, Andreia M.
Contribuinte(s)

UNIVERSIDADE DE SÃO PAULO

Data(s)

12/09/2013

12/09/2013

2012

Resumo

Alcohol and tobacco consumption are risk factors for head and neck squamous cell carcinoma (HNSCC). Aldehyde dehydrogenase 2 (ALDH2) and glutathione Stransferase pi 1 (GSTP1) are important enzymes for cellular detoxification and low efficiencies are implicated in cancer. We assessed the potential role of SET protein overexpression, a histone acetylation modulator accumulated in HNSCC, in gene regulation and protein activity of ALDH2 and GSTP1. SET was knocked down in HN13, HN12 and Cal27, and overexpressed in HEK293 cells; ethanol and cisplatin were the chemical agents. Cells with SET overexpression (HEK293/SET, HN13 and HN12) showed lower ALDH2 and GSTP1 mRNA levels and trichostatin A increased them (real-time PCR). Ethanol upregulated GSTP1 and ALDH2 mRNAs, whereas cisplatin upregulated GSTP1 in HEK293 cells. SET-chromatin binding revealed SET interaction with ALDH2 and GSTP1 promoters, specifically via SET NAP domain; ethanol and cisplatin abolished SET binding. ALDH2 and GSTP1 efficiency was assessed by enzymatic and comet assay. A lower ALDH2 activity was associated with greater DNA damage (tail intensity) in HEK293/SET compared with HEK293 cells, whereas HN13/siSET showed ALDH2 activity higher than HN13 cells. HN13/siSET cells showed increased tail intensity. Cisplatin-induced DNA damage response showed negative relationship between SET overexpression and BRCA2 recruitment. SET downregulated repair genes ATM, BRCA1 and CHEK2 and upregulated TP53. Cisplatin-induced cell-cycle arrest occurred in G0/G1 and S in HEK293 cells, whereas HEK293/SET showed G2/M stalling. Overall, cisplatin was more cytotoxic for HN13 than HN13/siSET cells. Our data suggest a role for SET in cellular detoxification, DNA damage response and genome integrity.

FAPESP [2010/20384-0, 2009/52228-0, 2009/10783-7, 2010/20536-4, 2010/08328-7]

FAPESP

CNPq

CNPq

Identificador

FEBS JOURNAL, HOBOKEN, v. 279, n. 24, pp. 4615-4628, DEC, 2012

1742-464X

http://www.producao.usp.br/handle/BDPI/33302

10.1111/febs.12047

http://dx.doi.org/10.1111/febs.12047

Idioma(s)

eng

Publicador

WILEY-BLACKWELL

HOBOKEN

Relação

FEBS JOURNAL

Direitos

closedAccess

Copyright WILEY-BLACKWELL

Palavras-Chave #ALDH2 #BRCA2 #CISPLATIN #ETHANOL #GSTP1 #PROTEIN PHOSPHATASE 2A #GENETIC POLYMORPHISMS #CANCER-CELLS #HEAD #EXPRESSION #CARCINOMA #TUMOR #PHOSPHORYLATION #SET/TAF-1-BETA #TRANSCRIPTION #MARCADOR MOLECULAR #FATORES DE TRANSCRIÇÃO #NEOPLASIAS #BIOCHEMISTRY & MOLECULAR BIOLOGY
Tipo

article

original article

publishedVersion