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N-acetyl cysteine mitigates curcumin-mediated telomerase inhibition through rescuing of Sp1 reduction in A549 cells
Journal article   Peer reviewed

N-acetyl cysteine mitigates curcumin-mediated telomerase inhibition through rescuing of Sp1 reduction in A549 cells

I-Lun Hsin, Gwo-Tarng Sheu, Hung-Hsuan Chen, Ling-Yen Chiu, Horng-Dar Wang, Hsiu-Wen Chan, Chung-Ping Hsu and Jiunn-Liang Ko
Mutation Research - Fundamental and Molecular Mechanisms of Mutagenesis, Vol.688(1-2), pp.72-77
06/2010

Abstract

Curcumin N-acetyl cysteine Reactive oxygen species Sp1 Telomerase activity
Curcumin is a natural compound that has been extensively observed due to its potential as an anticancer drug. Curcumin restrains cancer cell progression via telomerase activity suppression. However, the exact mechanism is still unknown. In this study, we demonstrate that the effects of curcumin on cell viability and telomerase activity can be blunted by reactive oxygen species (ROS) inhibitor N-acetyl cysteine (NAC). The ROS induced by curcumin in A549 cells was detected by flow cytometry. Using Western blot and RT-PCR, human telomerase reverse transcriptase (hTERT) decreased in the presence of curcumin. Sp1 is one of the important transcription factors in hTERT expression. Our data showed that curcumin decreases the expression of Sp1 through proteasome pathway. In addition, NAC blunted the Sp1 reduction and hTERT downregulation by curcumin. Further, reporter assay and DNA affinity precipitation assay confirmed the influence of curcumin on Sp1 in hTERT regulation. This is the first study to demonstrate that curcumin induces ROS production resulting in Sp1 binding activity inhibition and hTERT downregulation. © 2010 Elsevier B.V.

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