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  4. Differential activation of the DNA replication checkpoint contributes to asynchrony of cell division in C. elegans embryos
 
research article

Differential activation of the DNA replication checkpoint contributes to asynchrony of cell division in C. elegans embryos

Brauchle, M.
•
Baumer, K.
•
Gönczy, P.  
2003
Current Biology

BACKGROUND: Acquisition of lineage-specific cell cycle duration is a central feature of metazoan development. The mechanisms by which this is achieved during early embryogenesis are poorly understood. In the nematode Caenorhabditis elegans, differential cell cycle duration is apparent starting at the two-cell stage, when the larger anterior blastomere AB divides before the smaller posterior blastomere P(1). How anterior-posterior (A-P) polarity cues control this asynchrony remains to be elucidated.RESULTS: We establish that early C. elegans embryos possess a hitherto unrecognized DNA replication checkpoint that relies on the PI-3-like kinase atl-1 and the kinase chk-1. We demonstrate that preferential activation of this checkpoint in the P(1) blastomere contributes to asynchrony of cell division in two-cell-stage wild-type embryos. Furthermore, we show that preferential checkpoint activation is largely abrogated in embryos that undergo equal first cleavage following inactivation of Galpha signaling.CONCLUSION: Our findings establish that differential checkpoint activation contributes to acquisition of distinct cell cycle duration in two-cell-stage C. elegans embryos and suggest a novel mechanism coupling asymmetric division to acquisition of distinct cell cycle duration during development.

  • Details
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Type
research article
DOI
10.1016/S0960-9822(03)00295-1
PubMed ID

12747829

Author(s)
Brauchle, M.
Baumer, K.
Gönczy, P.  
Date Issued

2003

Published in
Current Biology
Volume

13

Issue

10

Start page

819

End page

27

Subjects

Animals

•

Animals

•

Genetically Modified

•

Blastomeres/physiology

•

Caenorhabditis elegans/cytology/*embryology/*physiology

•

Caenorhabditis elegans Proteins/metabolism

•

Cell Cycle Proteins/metabolism

•

Cell Division/physiology

•

Cell Polarity/genetics

•

Chromosome Segregation/drug effects/physiology

•

DNA Replication/genetics/*physiology

•

GTP-Binding Protein alpha Subunits/metabolism

•

Hydroxyurea/pharmacology

•

Microscopy/methods

•

Microscopy

•

Fluorescence

•

Mitosis/physiology

•

Phosphotransferases/metabolism

•

Protein Kinases/metabolism

•

S Phase/physiology

•

Signal Transduction

Note

ISREC (Swiss Institute for Experimental Cancer Research), 155, ch. des Boveresses, CH-1066 Epalinges/Lausanne, Switzerland.

Journal Article

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
UPGON  
Available on Infoscience
August 24, 2006
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/233782
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