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PMID: 16373703 Published · ppublish English Journal Article

Sensitization of DNA damage-induced apoptosis by the proteasome inhibitor PS-341 is p53 dependent and involves target proteins 14-3-3sigma and survivin.

Molecular cancer therapeutics ·Vol. 4 ·No. 12 ·2005-12-00 ·Pages 1880-90

Vaziri SA, Hill J, Chikamori K, Grabowski DR, Takigawa N, Chawla-Sarkar M, Rybicki LR, Gudkov AV, Mekhail T, Bukowski RM, Ganapathi MK, Ganapathi R

Abstract

Proteasome inhibition following DNA damage results in the synergistic induction of apoptosis via a nuclear factor-kappaB-independent mechanism. In this study, we identify the role of p53 in mediating apoptosis by the sequence-specific treatment involving the DNA-damaging, topoisomerase I-targeting drug SN-38 followed by the proteasome inhibitor PS-341 (SN-38-->PS-341). The p53-dependent sensitization of DNA damage-induced apoptosis by PS-341 is accompanied by persistent inhibition of proteasome activity and increased cytosolic accumulation of p53, including higher molecular weight forms likely representing ubiquitinated species. In contrast, pretreatment with PS-341 followed by treatment with SN-38 (PS-341-->SN-38), which leads to an antagonistic interaction, results in transient inhibition of proteasome activity and accumulation of significantly lower levels of p53 localized primarily to the nucleus. Whereas cells treated with PS-341-->SN-38 undergo G2 + M cell cycle arrest, cells treated with SN-38-->PS-341 exhibit a decreased G2 + M block with a concomitant increase in the sub-G1 population. Decreased accumulation of cells in the G2 + M phase of the cell cycle in SN-38-->PS-341-treated cells compared with PS-341-->SN-38-treated cells correlates with enhanced apoptosis and reduced expression of two p53-modulated proteins, 14-3-3sigma and survivin, both of which play critical roles in regulating G2 + M progression and apoptosis. The functional role of 14-3-3sigma or survivin in regulating the divergent function of p53 in response to SN-38-->PS-341 and PS-341-->SN-38 treatment in inducing apoptosis versus G2 + M arrest/DNA repair, respectively, was confirmed by targeted down-regulation of these proteins. These results provide insights into the mechanisms by which inhibition of proteasome activity modulates DNA damage-induced apoptosis via a p53-dependent pathway.

MeSH Terms
14-3-3 Proteins/physiology Apoptosis Base Sequence Boronic Acids/pharmacology Bortezomib Cell Cycle/drug effects Cell Line, Tumor Cysteine Proteinase Inhibitors/pharmacology DNA Damage DNA Primers Down-Regulation Humans Inhibitor of Apoptosis Proteins Microtubule-Associated Proteins/genetics,physiology Neoplasm Proteins/genetics,physiology Proteasome Inhibitors Pyrazines/pharmacology Survivin Tumor Suppressor Protein p53/physiology
Chemicals
14-3-3 Proteins BIRC5 protein, human Boronic Acids Cysteine Proteinase Inhibitors DNA Primers Inhibitor of Apoptosis Proteins Microtubule-Associated Proteins Neoplasm Proteins Proteasome Inhibitors Pyrazines Survivin Tumor Suppressor Protein p53 Bortezomib
Authors & Affiliations
12 authors, click to expand affiliations / ORCID
Vaziri Susan A J
Experimental Therapeutics Program, Taussig Cancer Center, Cleveland Clinic Foundation, R40, 9500 Euclid Avenue, Cleveland, OH 44195, USA.
Hill Jason
Chikamori Kenichi
Grabowski Dale R
Takigawa Nagio
Chawla-Sarkar Mamta
Rybicki Lisa R
Gudkov Andrei V
Mekhail Tarek
Bukowski Ronald M
Ganapathi Mahrukh K
Ganapathi Ram
Article Info
Journal
Molecular cancer therapeutics
Abbr.
Mol Cancer Ther
ISSN
1535-7163
Published
2005-12-00
Pages
1880-90
Language
English
Region
United States
NLM ID
101132535
Subset
IM
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