Mitotic requirement for aurora A kinase is bypassed in the absence of aurora B kinase
Hui Yang, Teresa F. Burke, Jack Dempsey, Bruce Diaz, Elizabeth Collins, John E. Toth, Richard P. Beckmann, Xiang Ye
Abstract
Hui Yang, Teresa F. Burke, Jack Dempsey, Bruce Diaz, Elizabeth Collins, John E. Toth, Richard P. Beckmann, Xiang Ye
Abstract
We investigated why treatment of cells with dual aurora A and B kinase inhibitors produces phenotypes identical to inactivation of aurora B. We found that dual aurora kinase inhibitors in fact potently inhibit cellular activities of both kinases, indicating that inactivation of aurora B bypasses aurora A in mitosis. RNAi experiments further established that inactivation of aurora B indeed bypasses the requirement for aurora A and leads to polyploidy. Inactivation of aurora A activates checkpoint kinase BubR1 in an aurora B-dependent manner. Our results thus show that aurora B is responsible for mitotic arrest in the absence of aurora A.
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We investigated why treatment of cells with dual aurora A and B kinase inhibitors produces phenotypes identical to inactivation of aurora B. We found that dual aurora kinase inhibitors in fact potently inhibit cellular activities of both kinases, indicating that inactivation of aurora B bypasses aurora A in mitosis. RNAi experiments further established that inactivation of aurora B indeed bypasses the requirement for aurora A and leads to polyploidy. Inactivation of aurora A activates checkpoint kinase BubR1 in an aurora B-dependent manner. Our results thus show that aurora B is responsible for mitotic arrest in the absence of aurora A.
Key concepts: Aurora B kinase, Aurora A kinase, Mitosis, Aurora kinase, Aurora inhibitor, Cell biology, Kinase, Biology