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Mol Cancer Ther. 2006;5:29-38
© 2006 American Association for Cancer Research

Inhibition of TRIP1/S8/hSug1, a component of the human 19S proteasome, enhances mitotic apoptosis induced by spindle poisons

Hiroshi Y. Yamada and Gary J. Gorbsky

Molecular, Cell, and Developmental Biology Research Program, Oklahoma Medical Research Foundation, Oklahoma City, Oklahoma

Requests for reprints: Hiroshi Y. Yamada, Oklahoma Medical Research Foundation, 825 Northeast 13th Street, MS48, Oklahoma City, OK 73104-5097. Phone: 405-271-2037; Fax: 405-271-7312. E-mail: Hirochi-yamada{at}omrf.ouhsc.edu

Mitotic spindle poisons (e.g., Taxol and vinblastine), used as chemotherapy drugs, inhibit mitotic spindle function, activate the mitotic spindle checkpoint, arrest cells in mitosis, and then cause cell death by mechanisms that are poorly understood. By expression cloning, we identified a truncated version of human TRIP1 (also known as S8, hSug1), an AAA (ATPases associated with diverse cellular activities) family ATPase subunit of the 19S proteasome regulatory complex, as an enhancer of spindle poison–mediated apoptosis. Stable expression of the truncated TRIP1/S8/hSug1 in HeLa cells [OP-TRIP1(88-406)] resulted in a decrease of measurable cellular proteasome activity, indicating that OP-TRIP1(88-406) had a dominant-negative effect on proteasome function. OP-TRIP1(88-406) revealed an increased apoptotic response after treatment with spindle poisons or with proteasome inhibitors. The increased apoptosis coincided with a significant decrease in expression of BubR1, a kinase required for activation and maintenance of the mitotic spindle checkpoint in response to treatment with spindle poisons. Small interfering RNA (siRNA)–mediated knockdown of TRIP1/S8/hSug1 resulted in a reduction of general proteasome activity and an increase in mitotic index. The siRNA treatment also caused increased cell death after spindle poison treatment. These results indicate that inhibition of TRIP1/S8/hSug1 function by expression of a truncated version of the protein or by siRNA-mediated suppression enhances cell death in response to spindle poison treatment. Current proteasome inhibitor drugs in trial as anticancer agents target elements of the 20S catalytic subcomplex. Our results suggest that targeting the ATPase subunits in 19S regulatory complex in the proteasome may enhance the antitumor effects of spindle poisons. [Mol Cancer Ther 2006;5(1):29–38]


Grant support: U.S. Department of Defense Breast Cancer Research Program fellowship DAMD 17-02-1-0532 (H.Y. Yamada) and National Institute of General Medical Science grant RO1-GM50412 (G.J. Gorbsky).

The costs of publication of this article were defrayed in part by the payment of page charges. This article must therefore be hereby marked advertisement in accordance with 18 U.S.C. Section 1734 solely to indicate this fact.

1 Supplementary material for this article is available at Molecular Cancer Therapeutics Online (http://mct.aacrjournals.org/).

2 Unpublished results.

Received 4/26/05; revised 10/24/05; accepted 11/15/05.







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Copyright © 2006 by the American Association for Cancer Research.