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PMID: 19515453 Published · ppublish English Journal Article Research Support, N.I.H., Extramural Research Support, Non-U.S. Gov't

Constitutively active RhoA inhibits proliferation by retarding G(1) to S phase cell cycle progression and impairing cytokinesis.

European journal of cell biology ·Vol. 88 ·No. 9 ·2009-09-00 ·Pages 495-507

Morin P, Flors C, Olson MF

Abstract

The actions of RhoA in cytoskeletal regulation have been extensively studied. RhoA also contributes to proliferation and oncogenic transformation by less well-characterized means. Elevated RhoA signalling has been associated with human cancer; through increased RhoA expression, mutation or elevated expression of activating Rho guanine-nucleotide exchange factors (GEFs), or from deletion or decreased expression of inhibitory Rho GTPase-activating proteins (GAPs). Unlike the Ras oncogene, constitutively-activated GTPase-deficient RhoA mutants have not been identified in tumours. To investigate the effects of active RhoA on proliferation, we generated Swiss3T3 cells that inducibly express wild-type RhoA or GTPase-deficient active V14RhoA. We found that V14RhoA inhibited cell proliferation by retarding entry into the DNA synthetic cell cycle phase and blocking successful completion of cytokinesis, resulting in an increased incidence of binucleate cells. These effects were associated with inhibition of mitogen-induced activation of the MAPK pathway, and suppression of several proteins involved in mitosis, including anillin, ECT2 and cyclin B1 which would be expected to result in reduced activation of endogenous RhoA at the cell equator. Accumulation of active RhoA protein in the midbody of cells in telophase was inhibited in V14RhoA-expressing cells, suggesting that RhoA inactivation must occur prior to re-activation. Defective cytokinesis was also associated with prominent actin structures in V14RhoA-expressing cells, which might be incompatible with equatorial furrowing. Using super-resolution imaging based on single-molecule switching, we have significantly improved the resolution of active RhoA in midbodies. These results indicate that constitutively-active RhoA antagonizes several cellular activities that contribute to proliferation, highlighting the importance for cycling between GTP/GDP-bound states.

MeSH Terms
3T3 Cells Animals Cell Cycle Cell Proliferation Cytokinesis/physiology Cytoskeleton/metabolism Fluorescent Antibody Technique G1 Phase/physiology Mice Microscopy, Fluorescence S Phase/physiology Telophase rhoA GTP-Binding Protein/metabolism
Chemicals
rhoA GTP-Binding Protein
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Morin Pierre
Beatson Institute for Cancer Research, Garscube Estate, Glasgow, UK.
Flors Cristina
Olson Michael F
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Article Info
Journal
European journal of cell biology
Abbr.
Eur J Cell Biol
ISSN
1618-1298
Published
2009-09-00
Epub
2009-00-09
Pages
495-507
Language
English
Region
Germany
NLM ID
7906240
PMCID
PMC2750871
Subset
IM
Grants
NCI NIH HHS · R01 CA030721 · United States
NCI NIH HHS · R01 CA030721-06 · United States
Cancer Research UK · United Kingdom
NCI NIH HHS · CA-030721 · United States
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