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PMID: 22801780 Published · ppublish English

CENP-E--dependent BubR1 autophosphorylation enhances chromosome alignment and the mitotic checkpoint.

The Journal of cell biology ·Vol. 198 ·No. 2 ·2012-10-16

Guo Yige, Kim Christine, Ahmad Sana, Zhang Jiayin, Mao Yinghui

Abstract

How the state of spindle microtubule capture at the kinetochore is translated into mitotic checkpoint signaling remains largely unknown. In this paper, we demonstrate that the kinetochore-associated mitotic kinase BubR1 phosphorylates itself in human cells and that this autophosphorylation is dependent on its binding partner, the kinetochore motor CENP-E. This CENP-E-dependent BubR1 autophosphorylation at unattached kinetochores is important for a full-strength mitotic checkpoint to prevent single chromosome loss. Replacing endogenous BubR1 with a nonphosphorylatable BubR1 mutant, as well as depletion of CENP-E, the BubR1 kinase activator, results in metaphase chromosome misalignment and a decrease of Aurora B-mediated Ndc80 phosphorylation at kinetochores. Furthermore, expressing a phosphomimetic BubR1 mutant substantially reduces the incidence of polar chromosomes in CENP-E-depleted cells. Thus, the state of CENP-E-dependent BubR1 autophosphorylation in response to spindle microtubule capture by CENP-E is important for kinetochore function in achieving accurate chromosome segregation.

Article Info
Journal
The Journal of cell biology
Abbr.
J Cell Biol
Published
2012-10-16
Indexed
2012-07-24
Updated
2016-10-25
Language
English
Country/Region
United States
NLM ID
0375356
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