Prolonged arrest of mammalian cells at the G1/S boundary results in permanent S phase stasis
Open Access
- 15 July 2002
- journal article
- Published by The Company of Biologists in Journal of Cell Science
- Vol. 115 (14) , 2829-2838
- https://doi.org/10.1242/jcs.115.14.2829
Abstract
Mammalian cells in culture normally enter a state of quiescence during G1 following suppression of cell cycle progression by senescence, contact inhibition or terminal differentiation signals. We find that mammalian fibroblasts enter cell cycle stasis at the onset of S phase upon release from prolonged arrest with the inhibitors of DNA replication, hydroxyurea or aphidicolin. During arrest typical S phase markers remain present, and G0/G1 inhibitory signals such as p21WAF1 and p27 are absent. Cell cycle stasis occurs in T-antigen transformed cells, indicating that p53 and pRB inhibitory circuits are not involved. While no DNA replication is evident in arrested cells, nuclei isolated from these cells retain measurable competence for in vitro replication. MCM proteins are required to license replication origins, and are put in place in nuclei in G1 and excluded from chromatin by the end of replication to prevent rereplication of the genome. Strikingly, MCM proteins are strongly depleted from chromatin during prolonged S phase arrest,and their loss may underlie the observed cell cycle arrest. S phase stasis may thus be a `trap' in which cells otherwise competent for S phase have lost a key component required for replication and thus can neither go forward nor retreat to G1 status.Keywords
This publication has 50 references indexed in Scilit:
- Tetraploid State Induces p53-dependent Arrest of Nontransformed Mammalian Cells in G1Molecular Biology of the Cell, 2001
- Nucleoplasmin-mediated chromatin remodelling is required for Xenopus sperm nuclei to become licensed for DNA replicationNucleic Acids Research, 2000
- Mutations of mitotic checkpoint genes in human cancersNature, 1998
- Cdc6p-dependent loading of Mcm proteins onto pre-replicative chromatin in budding yeastProceedings of the National Academy of Sciences, 1997
- The Xenopus Cdc6 Protein Is Essential for the Initiation of a Single Round of DNA Replication in Cell-Free ExtractsCell, 1996
- Microtubule dependency of p34cdc2 inactivation and mitotic exit in mammalian cells.The Journal of cell biology, 1994
- p53-dependent inhibition of cyclin-dependent kinase activities in human fibroblasts during radiation-induced G1 arrestCell, 1994
- WAF1, a potential mediator of p53 tumor suppressionCell, 1993
- Completion of DNA replication is monitored by a feedback system that controls the initiation of mitosis in vitro: Studies in XenopusCell, 1990
- Activation of cdc2 protein kinase during mitosis in human cells: Cell cycle-dependent phosphorylation and subunit rearrangementCell, 1988