PomBase home

Reference - PMID:28988770 - Structural Basis for a Safety-Belt Mechanism That Anchors Condensin to Chromosomes.

Reference summary

PubMed ID
PMID:28988770
Title
Structural Basis for a Safety-Belt Mechanism That Anchors Condensin to Chromosomes.
Authors
Kschonsak M, Merkel F, Bisht S, Metz J, Rybin V, Hassler M, Haering CH
Citation
Cell 2017 Oct 19;171(3):588-600.e24
Publication year
2017
Abstract
Condensin protein complexes coordinate the formation of mitotic chromosomes and thereby ensure the successful segregation of replicated genomes. Insights into how condensin complexes bind to chromosomes and alter their topology are essential for understanding the molecular principles behind the large-scale chromatin rearrangements that take place during cell divisions. Here, we identify a direct DNA-binding site in the eukaryotic condensin complex, which is formed by its Ycg1 Cnd3 HEAT-repeat and Brn1 Cnd2 kleisin subunits. DNA co-crystal structures reveal a conserved, positively charged groove that accommodates the DNA double helix. A peptide loop of the kleisin subunit encircles the bound DNA and, like a safety belt, prevents its dissociation. Firm closure of the kleisin loop around DNA is essential for the association of condensin complexes with chromosomes and their DNA-stimulated ATPase activity. Our data suggest a sophisticated molecular basis for anchoring condensin complexes to chromosomes that enables the formation of large-sized chromatin loops.

Annotation

GO molecular function

GO:0061776 - ATP-dependent topological DNA co-entrapment activity

Genes:

GO:0005515 - protein binding

Genes: