Birkenfeld, Jörg; Nalbant, Perihan; Bohl, Benjamin P.; Pertz, Oliver; Hahn, Klaus M.; Bokoch, Gary M.:
GEF-H1 Modulates Localized RhoA Activation during Cytokinesis under the Control of Mitotic Kinases
In: Developmental Cell, Jg. 12 (2007), Heft 5, S. 699 - 712
2007Artikel/Aufsatz in ZeitschriftOpen Access
BiologieFakultät für Biologie
Damit verbunden: 1 Publikation(en)
Titel in Englisch:
GEF-H1 Modulates Localized RhoA Activation during Cytokinesis under the Control of Mitotic Kinases
Autor*in:
Birkenfeld, Jörg;Nalbant, PerihanUDE
LSF ID
49819
ORCID
0000-0002-5649-5933ORCID iD
Sonstiges
der Hochschule zugeordnete*r Autor*in
;
Bohl, Benjamin P.;Pertz, Oliver;Hahn, Klaus M.;Bokoch, Gary M.
Erscheinungsjahr:
2007
Open Access?:
Open Access
Sprache des Textes:
Englisch

Abstract:

Formation of the mitotic cleavage furrow is dependent upon both microtubules and activity of the small GTPase RhoA. GEF-H1 is a microtubule-regulated exchange factor that couples microtubule dynamics to RhoA activation. GEF-H1 localized to the mitotic apparatus in HeLa cells, particularly at the tips of cortical microtubules and the midbody, and perturbation of GEF-H1 function induced mitotic aberrations, including asymmetric furrowing, membrane blebbing, and impaired cytokinesis. The mitotic kinases Aurora A/B and Cdk1/Cyclin B phosphorylate GEF-H1, thereby inhibiting GEF-H1 catalytic activity. Dephosphorylation of GEF-H1 occurs just prior to cytokinesis, accompanied by GEF-H1-dependent GTP loading on RhoA. Using a live cell biosensor, we demonstrate distinct roles for GEF-H1 and Ect2 in regulating Rho activity in the cleavage furrow, with GEF-H1 catalyzing Rho activation in response to Ect2-dependent localization and initiation of cell cleavage. Our results identify a GEF-H1-dependent mechanism to modulate localized RhoA activation during cytokinesis under the control of mitotic kinases.