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Reference - PMID:29358048 - Establishment of DNA-DNA Interactions by the Cohesin Ring.

Reference summary

PubMed ID
PMID:29358048
Title
Establishment of DNA-DNA Interactions by the Cohesin Ring.
Authors
Murayama Y, Samora CP, Kurokawa Y, Iwasaki H, Uhlmann F
Citation
Cell 2018 Jan 25;172(3):465-477.e15
Publication year
2018
Abstract
The ring-shaped structural maintenance of chromosome (SMC) complexes are multi-subunit ATPases that topologically encircle DNA. SMC rings make vital contributions to numerous chromosomal functions, including mitotic chromosome condensation, sister chromatid cohesion, DNA repair, and transcriptional regulation. They are thought to do so by establishing interactions between more than one DNA. Here, we demonstrate DNA-DNA tethering by the purified fission yeast cohesin complex. DNA-bound cohesin efficiently and topologically captures a second DNA, but only if that is single-stranded DNA (ssDNA). Like initial double-stranded DNA (dsDNA) embrace, second ssDNA capture is ATP-dependent, and it strictly requires the cohesin loader complex. Second-ssDNA capture is relatively labile but is converted into stable dsDNA-dsDNA cohesion through DNA synthesis. Our study illustrates second-DNA capture by an SMC complex and provides a molecular model for the establishment of sister chromatid cohesion.

Annotation

GO biological process

GO:0007064 - mitotic sister chromatid cohesion

Genes:

GO molecular function

GO:0061775 - cohesin loader activity

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Multi-locus phenotype

FYPO:0006483 - decreased mitotic cohesin ssDNA (lagging strand) loading

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Genotypes:

Single locus phenotype

FYPO:0006483 - decreased mitotic cohesin ssDNA (lagging strand) loading

Genes:

Genotypes:

FYPO:0006481 - increased mitotic cohesin ssDNA (lagging strand) loading

Genes:

Genotypes:

FYPO:0006482 - normal mitotic cohesin ssDNA (lagging strand) loading

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Genotypes: