Chromosome Cohesion, Condensation, and Separation
- 1 June 2000
- journal article
- review article
- Published by Annual Reviews in Annual Review of Biochemistry
- Vol. 69 (1) , 115-144
- https://doi.org/10.1146/annurev.biochem.69.1.115
Abstract
▪ Abstract The faithful segregation of genetic information requires highly orchestrated changes of chromosome structure during the mitotic cell cycle. The linkage between duplicated sister DNAs is established during S phase and maintained throughout G2 phase (cohesion). In early mitosis, dramatic structural changes occur to produce metaphase chromosomes, each consisting of a pair of compacted sister chromatids (condensation). At anaphase onset, a signal is produced to disrupt the linkage between sister chromatids (separation), allowing them to be pulled apart to opposite poles of the cell. This review discusses our current understanding of the three stages of large-scale structural changes of chromosomes in eukaryotic cells. Recent genetic and biochemical studies have identified key components involved in these processes and started to uncover hitherto unexpected functional links between mitotic chromosome dynamics and other important chromosome functions.Keywords
This publication has 201 references indexed in Scilit:
- SMC proteins and chromosome structureTrends in Cell Biology, 1998
- Mutations in fission yeast Cut15, an importin α homolog, lead to mitotic progression without chromosome condensationCurrent Biology, 1998
- Localization of BRRN1, the Human Homologue ofDrosophila barr,to 2q11.2Genomics, 1997
- Sequence Conservation of therad21 Schizosaccharomyces pombeDNA Double-Strand Break Repair Gene in Human and MouseGenomics, 1996
- Separation of Sister Chromatids in Mitosis Requires the Drosophila pimples Product, a Protein Degraded after the Metaphase/Anaphase TransitionCell, 1996
- Mei-S332, a drosophila protein required for sister-chromatid cohesion, can localize to meiotic centromere regionsCell, 1995
- Resolving the role of topoisomerase II in chromatin structure and functionTrends in Cell Biology, 1995
- DPY-27: A chromosome condensation protein homolog that regulates C. elegans dosage compensation through association with the X chromosomeCell, 1994
- A heterodimeric coiled-coil protein required for mitotic chromosome condensation in vitroCell, 1994
- The fission yeast cut1+ gene regulates spindle pole body duplication and has homology to the budding yeast ESP1 geneCell, 1990