AI Article Synopsis

  • Accurate mitotic cell division requires the assembly of replicated chromatin into chromosomes, with proteins like condensin playing crucial roles in this process.
  • Researchers used advanced techniques to study how nucleosomes behave during mitosis in living human cells, discovering that their motion becomes more constrained as chromosomes form.
  • Condensins not only help organize the chromosomes by acting as molecular crosslinkers but also interact with nucleosomes via histone tails, leading to further compaction of entire chromosomes.

Article Abstract

For accurate mitotic cell division, replicated chromatin must be assembled into chromosomes and faithfully segregated into daughter cells. While protein factors like condensin play key roles in this process, it is unclear how chromosome assembly proceeds as molecular events of nucleosomes in living cells and how condensins act on nucleosomes to organize chromosomes. To approach these questions, we investigate nucleosome behavior during mitosis of living human cells using single-nucleosome tracking, combined with rapid-protein depletion technology and computational modeling. Our results show that local nucleosome motion becomes increasingly constrained during mitotic chromosome assembly, which is functionally distinct from condensed apoptotic chromatin. Condensins act as molecular crosslinkers, locally constraining nucleosomes to organize chromosomes. Additionally, nucleosome-nucleosome interactions via histone tails constrain and compact whole chromosomes. Our findings elucidate the physical nature of the chromosome assembly process during mitosis.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11339268PMC
http://dx.doi.org/10.1038/s41467-024-51454-yDOI Listing

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