Outside-in progression of heterochromatin replication and exclusion of CDC45 from the PCH domain in Drosophila
Hickmann, C.; Upadhyayula, S.; Karpen, G. H.
Show abstract
Heterochromatin replication isnt random or uniform, but occurs in a characteristic spatial and temporal pattern. Previous studies produced conflicting models for pericentric heterochromatin (PCH) replication, suggesting either that heterochromatic sequences translocate to the domain surface for replication, or that replication can also occur internally through localized decondensation. To distinguish true overlap from peripheral enrichment around an irregular PCH domain, we developed FOC-Map, a colocalization analysis approach that combines segmentation of one channel with binning of the other. Applying FOC-Map to three-dimensional Airyscan imaging of cultured Drosophila cells, we find that replication foci at the onset of late S-phase are confined to the outer boundary of the PCH domain, forming a shell-like pattern with little overlap into the HP1a-rich interior. As late S-phase progresses, replication foci are observed within the domain, localizing to low-HP1a regions interspersed between more condensed regions. We then assessed the distribution of CDC45, a rate-limiting replication initiation factor, and found that CDC45 foci are depleted from the PCH domain throughout the cell cycle. We propose that low levels of CDC45 within HP1a-rich PCH limit replication initiation to the domain periphery, giving rise to the shell-like pattern of replication foci that progressively works inward until PCH replication is complete.
Matching journals
The top 5 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Rapid transcriptional response to a dynamic morphogen by time integration 95%
- Simultaneous regulation of cytokinetic furrow and nucleus positions by cortical tension contributes to proper DNA segregation during late mitosis 94%
- Multi-site phosphorylation of yeast Mif2/CENP-C promotes inner kinetochore assembly 94%
Similar papers in this journal
Similar papers in this journal
- Live imaging and biophysical modeling support a button-based mechanism of somatic homolog pairing in Drosophila 95%
- Coarsening dynamics can explain meiotic crossover patterning in both the presence and absence of the synaptonemal complex 95%
- A positive feedback loop drives centrosome maturation in flies 95%
Similar papers in this journal
- The FACT complex and cell cycle progression are essential to maintain asymmetric transcription factor partitioning during cell division 95%
- Centromere-proximal meiotic crossovers in Drosophila melanogaster are suppressed by both highly-repetitive heterochromatin and the centromere effect 95%
- The spatial position of budding yeast chromosomes affects gene expression 95%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.