A functional genomic screen identifies a role for TAO1 kinase in spindle-checkpoint signalling

被引:0
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作者
Viji M. Draviam
Frank Stegmeier
Grzegorz Nalepa
Mathew E. Sowa
Jing Chen
Anthony Liang
Gregory J. Hannon
Peter K. Sorger
J. Wade Harper
Stephen J. Elledge
机构
[1] Massachusetts Institute of Technology,Department of Biology
[2] Harvard Medical School,Department of Systems Biology
[3] Howard Hughes Medical Institute,Department of Genetics
[4] Harvard Partners Center for Genetics and Genomics,Department of Pathology
[5] Harvard Medical School,undefined
[6] Harvard Medical School,undefined
[7] Cold Spring Harbor Laboratory,undefined
[8] Watson School of Biological Sciences,undefined
来源
Nature Cell Biology | 2007年 / 9卷
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摘要
Defects in chromosome–microtubule attachment trigger spindle-checkpoint activation and delay mitotic progression1,2. How microtubule attachment is sensed and integrated into the steps of checkpoint-signal amplification is poorly understood. In a functional genomic screen targeting human kinases and phosphatases, we identified a microtubule affinity-regulating kinase kinase, TAO1 (also known as MARKK) as an important regulator of mitotic progression, required for both chromosome congression and checkpoint-induced anaphase delay. TAO1 interacts with the checkpoint kinase BubR1 and promotes enrichment of the checkpoint protein Mad2 at sites of defective attachment, providing evidence for a regulatory step that precedes the proposed Mad2–Mad1 dependent checkpoint-signal amplification step3. We propose that the dual functions of TAO1 in regulating microtubule dynamics and checkpoint signalling may help to coordinate the establishment and monitoring of correct congression of chromosomes, thereby protecting genomic stability in human cells.
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页码:556 / 564
页数:8
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