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PMID: 17210716 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Mechanisms of mitotic cell death induced by chemotherapy-mediated G2 checkpoint abrogation.

Cancer research ·Vol. 67 ·No. 1 ·2007-01-01 ·Pages 339-45

Vogel C, Hager C, Bastians H

Abstract

The novel concept of anticancer treatment termed "G(2) checkpoint abrogation" aims to target p53-deficient tumor cells and is currently explored in clinical trials. The anticancer drug UCN-01 is used to abrogate a DNA damage-induced G(2) cell cycle arrest leading to mitotic entry and subsequent cell death, which is poorly defined as "mitotic cell death" or "mitotic catastrophe." We show here that UCN-01 treatment results in a mitotic arrest that requires an active mitotic spindle checkpoint, involving the function of Mad2, Bub1, BubR1, Mps1, Aurora B, and survivin. During the mitotic arrest, hallmark parameters of the mitochondria-associated apoptosis pathway become activated. Interestingly, this apoptotic response requires the spindle checkpoint protein Mad2, suggesting a proapoptotic function for Mad2. However, although survivin and Aurora B are also required for the mitotic arrest, both proteins are part of an antiapoptotic pathway that restrains the UCN-01-induced apoptosis by promoting hyperphosphorylation of Bcl-2 and by inhibiting the activation of Bax. Consequently, inhibition of the antiapoptotic pathway by genetic ablation of survivin or by pharmacologic inhibitors of Aurora B or cyclin-dependent kinase 1 lead to a significant enhancement of apoptosis and therefore act synergistically with UCN-01. Thus, by defining the mechanism of cell death on G(2) checkpoint abrogation we show a highly improved strategy for an anticancer treatment by the combined use of UCN-01 with abrogators of the survivin/Aurora B-dependent antiapoptotic pathway that retains the selectivity for p53-defective cancer cells.

MeSH Terms
Antineoplastic Combined Chemotherapy Protocols/pharmacology Apoptosis/drug effects,physiology Aurora Kinase B Aurora Kinases CDC2 Protein Kinase/antagonists & inhibitors,metabolism Calcium-Binding Proteins/physiology Cell Cycle Proteins/physiology Doxorubicin/administration & dosage Drug Synergism G2 Phase/drug effects,physiology HeLa Cells Humans Inhibitor of Apoptosis Proteins Mad2 Proteins Microtubule-Associated Proteins/physiology Mitosis/drug effects,physiology Neoplasm Proteins/physiology Protein Serine-Threonine Kinases/antagonists & inhibitors,metabolism Repressor Proteins/physiology Spindle Apparatus/drug effects,physiology Staurosporine/administration & dosage,analogs & derivatives,pharmacology Survivin
Chemicals
BIRC5 protein, human Calcium-Binding Proteins Cell Cycle Proteins Inhibitor of Apoptosis Proteins MAD2L1 protein, human Mad2 Proteins Microtubule-Associated Proteins Neoplasm Proteins Repressor Proteins Survivin 7-hydroxystaurosporine Doxorubicin AURKB protein, human Aurora Kinase B Aurora Kinases Protein Serine-Threonine Kinases CDC2 Protein Kinase Staurosporine
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Vogel Celia
Institute for Molecular Biology and Tumor Research, Philipps University of Marburg, Emil-Mannkopff-Strasse 2, D-35037 Marburg, Germany.
Hager Christian
Bastians Holger
Article Info
Journal
Cancer research
Abbr.
Cancer Res
ISSN
0008-5472
Published
2007-01-01
Pages
339-45
Language
English
Region
United States
NLM ID
2984705R
Subset
IM
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