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Reference - PMID:37820734 - Establishment of dsDNA-dsDNA interactions by the condensin complex.

Reference summary

PubMed ID
PMID:37820734
Title
Establishment of dsDNA-dsDNA interactions by the condensin complex.
Authors
Tang M, Pobegalov G, Tanizawa H, Chen ZA, Rappsilber J, Molodtsov M, Noma KI, Uhlmann F
Citation
Mol Cell 2023 Nov 02;83(21):3787-3800.e9
Publication year
2023
Abstract
Condensin is a structural maintenance of chromosomes (SMC) complex family member thought to build mitotic chromosomes by DNA loop extrusion. However, condensin variants unable to extrude loops, yet proficient in chromosome formation, were recently described. Here, we explore how condensin might alternatively build chromosomes. Using bulk biochemical and single-molecule experiments with purified fission yeast condensin, we observe that individual condensins sequentially and topologically entrap two double-stranded DNAs (dsDNAs). Condensin loading transitions through a state requiring DNA bending, as proposed for the related cohesin complex. While cohesin then favors the capture of a second single-stranded DNA (ssDNA), second dsDNA capture emerges as a defining feature of condensin. We provide complementary in vivo evidence for DNA-DNA capture in the form of condensin-dependent chromatin contacts within, as well as between, chromosomes. Our results support a "diffusion capture" model in which condensin acts in mitotic chromosome formation by sequential dsDNA-dsDNA capture.

Annotation

GO molecular function

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

Genes:

GO:0106260 - DNA-DNA tethering activity

Genes:

GO:0003690 - double-stranded DNA binding

Genes: