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  4. Regulation of cortical contractility and spindle positioning by the protein phosphatase 6 PPH-6 in one-cell stage C. elegans embryos
 
research article

Regulation of cortical contractility and spindle positioning by the protein phosphatase 6 PPH-6 in one-cell stage C. elegans embryos

Afshar, Katayoun  
•
Werner, Michael E
•
Tse, Yu Chung
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2010
Development

Modulation of the microtubule and the actin cytoskeleton is crucial for proper cell division. Protein phosphorylation is known to be an important regulatory mechanism modulating these cytoskeletal networks. By contrast, there is a relative paucity of information regarding how protein phosphatases contribute to such modulation. Here, we characterize the requirements for protein phosphatase PPH-6 and its associated subunit SAPS-1 in one-cell stage C. elegans embryos. We establish that the complex of PPH-6 and SAPS-1 (PPH-6/SAPS-1) is required for contractility of the actomyosin network and proper spindle positioning. Our analysis demonstrates that PPH-6/SAPS-1 regulates the organization of cortical non-muscle myosin II (NMY-2). Accordingly, we uncover that PPH-6/SAPS-1 contributes to cytokinesis by stimulating actomyosin contractility. Furthermore, we demonstrate that PPH-6/SAPS-1 is required for the proper generation of pulling forces on spindle poles during anaphase. Our results indicate that this requirement is distinct from the role in organizing the cortical actomyosin network. Instead, we uncover that PPH-6/SAPS-1 contributes to the cortical localization of two positive regulators of pulling forces, GPR-1/2 and LIN-5. Our findings provide the first insights into the role of a member of the PP6 family of phosphatases in metazoan development

  • Details
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Type
research article
DOI
10.1242/dev.042754
Web of Science ID

WOS:000273091500006

Author(s)
Afshar, Katayoun  
Werner, Michael E
Tse, Yu Chung
Glotzer, Michael
Gönczy, Pierre  
Date Issued

2010

Published in
Development
Volume

137

Issue

2

Start page

237

End page

47

Subjects

Cytoskeleton

•

Asymmetric cell division

•

Cortical pulling forces

•

C. elegans

•

Actomyosin network

•

Caenorhabditis-Elegans

•

G-Alpha

•

Mitotic Spindle

•

Distinct Roles

•

Par Proteins

•

Myosin-Ii

•

Division

•

Polarity

•

Cytokinesis

•

Kinase

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
UPGON  
Available on Infoscience
January 11, 2010
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/45461
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