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Am J Physiol Renal Physiol (November 4, 2009). doi:10.1152/ajprenal.00410.2009
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Submitted on July 21, 2009
Revised on October 5, 2009
Accepted on November 3, 2009

Inhibitors of histone deacetylases suppress cisplatin-induced p53 activation and apoptosis in renal tubular cells

Guie Dong1, Jia Luo2, Vijay Kumar3, and Zheng Dong4*

1 Medical College of Georgia
2 University of Kentucky
3 Charlie Norwood VA Medical and Medical College of Georgia
4 Medical College of Georgia and Charlie Norwood VA Medical Center

* To whom correspondence should be addressed. E-mail: zdong{at}mail.mcg.edu.

Inhibitors of histone deacetylases, including suberoylanilide hydroxamic acid (SAHA) and Trichostatin A (TSA), are emerging anticancer agents. In the current study, we have examined the cytoprotective effects of these agents. Cisplatin induced 40-50% apoptosis in rat kidney proximal tubular cells (RPTC) in 18 hours, which was suppressed to 20-30% by 1-5 μM SAHA or 0.1 μM TSA. Consistently, SAHA partially prevented cisplatin-induced caspase activation. The cytoprotective effects of SAHA and TSA were associated with long term cell survival. During cisplatin treatment, Bax translocated to mitochondria, leading to cytochrome c release. Both Bax translocation and cytochrome c release were ameliorated by SAHA. Mechanistically, SAHA inhibited and TSA delayed p53 phosphorylation, acetylation and activation during cisplatin incubation. At the upstream signaling level, SAHA blocked cisplatin-induced phosphorylation of Chk2, a key DNA damage response kinase. Interestingly, in HCT116 colon cancer cells SAHA suppressed cisplatin-induced p53 activation, but enhanced apoptosis. The results suggest that inhibitors of histone deacetylases can protect against cisplatin nephrotoxicity by attenuating DNA damage response and associated p53 activation.







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