Click here to close Hello! We notice that you are using Internet Explorer, which is not supported by Xenbase and may cause the site to display incorrectly. We suggest using a current version of Chrome, FireFox, or Safari.
XB-ART-5479
Cell 2003 Apr 04;1131:115-25. doi: 10.1016/s0092-8674(03)00200-9.
Show Gene links Show Anatomy links

A role for Ran-GTP and Crm1 in blocking re-replication.

Yamaguchi R , Newport J .


???displayArticle.abstract???
All eukaryotic cells have regulatory mechanisms that limit genomic replication to a single round each cell cycle. These systems function by blocking formation of prereplication complexes. The regulatory mechanisms in the yeast S. cerevisiae have been identified, but these do not appear to be conserved in metazoans. Using Xenopus egg extracts, we have identified a metazoan-specific regulatory system that limits replication to a single round. We show that during S phase, soluble MCM helicase, an essential initiation factor, is inactivated when it associates with exportin-1/Crm1. Formation of this complex is dependent on both high Ran-GTP and cdk2 kinase activity. Lowering Ran-GTP within nuclei or nuclear extracts allows MCM to reassociate with chromatin during S phase and induces re-replication. Importantly, prevention of re-replication requires MCM-Crm1 complex formation, but it does not require export of MCM from the nucleus. Therefore, in metazoans, Crm1 functions in both nuclear export and blocking of re-replication.

???displayArticle.pubmedLink??? 12679039
???displayArticle.link??? Cell
???displayArticle.grants??? [+]

Species referenced: Xenopus laevis
Genes referenced: cdk2 mmut ran xpo1

References [+] :
Blow, A new role for Ran in ensuring precise duplication of chromosomal DNA. 2003, Pubmed