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  4. The S-pombe cytokinesis NDR kinase Sid2 activates Fin1 NIMA kinase to control mitotic commitment through Pom1/Wee1
 
research article

The S-pombe cytokinesis NDR kinase Sid2 activates Fin1 NIMA kinase to control mitotic commitment through Pom1/Wee1

Grallert, Agnes
•
Connolly, Yvonne
•
Smith, Duncan L.
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2012
Nature Cell Biology

Mitotic exit integrates the reversal of the phosphorylation events initiated by mitotic kinases with a controlled cytokinesis event that cleaves the cell in two. The mitotic exit network (MEN) of budding yeast regulates both processes, whereas the fission yeast equivalent, the septum initiation network (SIN), controls only the execution of cytokinesis. The components and architecture of the SIN and MEN are highly conserved(1). At present, it is assumed that the functions of the core SIN-MEN components are restricted to their characterized roles at the end of mitosis. We now show that the NDR (nuclear Dbf2-related) kinase component of the fission yeast SIN, Sid2-Mob1, acts independently of the other known SIN components in G2 phase of the cell cycle to control the timing of mitotic commitment. Sid2-Mob1 promotes mitotic commitment by directly activating the NIMA (Never In Mitosis)-related kinase Fin1. Fin1's activation promotes its own destruction, thereby making Fin1 activation a transient feature of G2 phase. This spike of Fin1 activation modulates the activity of the Pom1/Cdr1/Cdr2 geometry network towards Wee1.

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Type
research article
DOI
10.1038/ncb2514
Web of Science ID

WOS:000305921200013

Author(s)
Grallert, Agnes
Connolly, Yvonne
Smith, Duncan L.
Simanis, Viesturs  
Hagan, Iain M.
Date Issued

2012

Publisher

Nature Publishing Group

Published in
Nature Cell Biology
Volume

14

Start page

738

End page

745

Subjects

Yeast Schizosaccharomyces-Pombe

•

Fission Yeast

•

Protein-Kinase

•

Cell Length

•

Mitosis

•

Onset

•

Size

•

Segregation

•

Progression

•

Homolog

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
UPSIM  
Available on Infoscience
July 27, 2012
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/84232
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