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Wip1 controls the translocation of the chromosomal passenger complex to the central spindle for faithful mitotic exit

Authors
Zhang, XianghuaPark, Ji EunKim, Eun HoHong, JiheeHwang, Ki-TaeKim, Young A.Jang, Chang-Young
Issue Date
Mar-2021
Publisher
SPRINGER BASEL AG
Keywords
Aurora B; Checkpoint; DNA damage response; Homeostasis; MKLP1
Citation
CELLULAR AND MOLECULAR LIFE SCIENCES, v.78, no.6, pp 2821 - 2838
Pages
18
Journal Title
CELLULAR AND MOLECULAR LIFE SCIENCES
Volume
78
Number
6
Start Page
2821
End Page
2838
URI
https://scholarworks.sookmyung.ac.kr/handle/2020.sw.sookmyung/1156
DOI
10.1007/s00018-020-03665-x
ISSN
1420-682X
1420-9071
Abstract
Dramatic cellular reorganization in mitosis critically depends on the timely and temporal phosphorylation of a broad range of proteins, which is mediated by the activation of the mitotic kinases and repression of counteracting phosphatases. The mitosis-to-interphase transition, which is termed mitotic exit, involves the removal of mitotic phosphorylation by protein phosphatases. Although protein phosphatase 1 (PP1) and protein phosphatase 2A (PP2A) drive this reversal in animal cells, the phosphatase network associated with ordered bulk dephosphorylation in mitotic exit is not fully understood. Here, we describe a new mitotic phosphatase relay in which Wip1/PPM1D phosphatase activity is essential for chromosomal passenger complex (CPC) translocation to the anaphase central spindle after release from the chromosome via PP1-mediated dephosphorylation of histone H3T3. Depletion of endogenous Wip1 and overexpression of the phosphatase-dead mutant disturbed CPC translocation to the central spindle, leading to failure of cytokinesis. While Wip1 was degraded in early mitosis, its levels recovered in anaphase and the protein functioned as a Cdk1-counteracting phosphatase at the anaphase central spindle and midbody. Mechanistically, Wip1 dephosphorylated Thr-59 in inner centromere protein (INCENP), which, subsequently bound to MKLP2 and recruited other components to the central spindle. Furthermore, Wip1 overexpression is associated with the overall survival rate of patients with breast cancer, suggesting that Wip1 not only functions as a weak oncogene in the DNA damage network but also as a tumor suppressor in mitotic exit. Altogether, our findings reveal that sequential dephosphorylation of mitotic phosphatases provides spatiotemporal regulation of mitotic exit to prevent tumor initiation and progression.
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