Journal of Biological Chemistry
Volume 277, Issue 39, 27 September 2002, Pages 36832-36838
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MECHANISMS OF SIGNAL TRANSDUCTION
ATR Enforces the Topoisomerase II-dependent G2 Checkpoint through Inhibition of Plk1 Kinase*

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An ATR-dependent G2checkpoint responds to inhibition of topoisomerase II and delays entry into mitosis by sustaining nuclear exclusion of cyclin B1-Cdk1 complexes. Here we report that induction of this checkpoint with ICRF-193, a topoisomerase II catalytic inhibitor that does not cause DNA damage, was associated with an ATR-dependent inhibition of polo-like kinase 1 (Plk1) kinase activity and a decrease in cyclin B1 phosphorylation. Expression of constitutively active Plk1 but not wild type Plk1 reversed ICRF-193-induced mitotic delay in HeLa cells, suggesting that Plk1 kinase activity is important for the checkpoint response to ICRF-193. G2/M synchronized normal human fibroblasts, when treated with ICRF-193, showed a decrease in cyclin B1 phosphorylation and Plk1 kinase activity despite high cyclin B1-Cdk1 kinase activity. G2 fibroblasts that were treated with caffeine to override the checkpoint response to ICRF-193 displayed a high incidence of chromosomal aberrations. Taken together, these results suggest that ATR-dependent inhibition of Plk1 kinase activity may be one mechanism to regulate cyclin B1 phosphorylation and sustain nuclear exclusion during the G2checkpoint response to topoisomerase II inhibition. Moreover, the results demonstrate an important role for the topoisomerase II-dependent G2 checkpoint in the preservation of human genomic stability.

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Published, JBC Papers in Press, July 29, 2002, DOI 10.1074/jbc.M206109200

*

This work was supported in part by Public Health Service Grants CA42765 (to W. K. K.), P30-CA16086, and P30-ES10126 and a grant from the Ulster Cancer Foundation (to C. S. D.).The costs of publication of this article were defrayed in part by the payment of page charges. The article must therefore be hereby marked “advertisement” in accordance with 18 U.S.C. Section 1734 solely to indicate this fact.

§

These authors contributed equally to this work.

Supported by NIEHS, National Institutes of Health Environmental Pathology Training Grant T32-ES07017.