Activation of Cdh1-dependent APC is required for G(1) cell cycle arrest and DNA damage-induced G(2) checkpoint in vertebrate cells
Citation
T. Sudo et al., Activation of Cdh1-dependent APC is required for G(1) cell cycle arrest and DNA damage-induced G(2) checkpoint in vertebrate cells, EMBO J, 20(22), 2001, pp. 6499-6508
Categorie Soggetti
Molecular Biology & Genetics
Journal title
EMBO JOURNAL
SICI code
0261-4189(20011115)20:22<6499:AOCAIR>2.0.ZU;2-F
Abstract
Anaphase-promoting complex (APC) is activated by two regulatory proteins, C
dc20 and Cdh1. In yeast and Drosophila, Cdh1-dependent APC (Cdh1-APC) activ
ity targets mitotic cyclins from the end of mitosis to the G(1) phase. To i
nvestigate the function of Cdh1 in vertebrate cells, we generated clones of
chicken DT40 cells disrupted in their Cdh1 loci. Cdh1 was dispensable for
viability and cell cycle progression. However, similarly to yeast and Droso
phila, loss of Cdh1 induced unscheduled accumulation of mitotic cyclins in
G(1), resulting in abrogation of G(1) arrest caused by treatment with rapam
ycin, an inducer of p27(Kip1). Furthermore, we found that Cdh1(-/-) cells f
ail to maintain DNA damage-induced G(2) arrest and that Cdh1-APC is activat
ed by X-irradiation-induced DNA damage. Thus, activation of Cdh1-APC plays
a crucial role in both cdk inhibitor-dependent G(1) arrest and DNA damage-i
nduced G(2) arrest.