Loss of multi-level 3D genome organization during breast cancer progression
Rossini, R.; Oshaghi, M.; Nekrasov, M.; Bellanger, A.; Domaschenz, R.; Dijkwel, Y.; Abdelhalim, M.; Collas, P.; Tremethick, D.; Paulsen, J.
Show abstract
Breast cancer entails intricate alterations in genome organization and expression. However, how three-dimensional (3D) chromatin structure changes in the progression from a normal to a breast cancer malignant state remains unknown. To address this, we conducted an analysis combining Hi-C data with lamina-associated domains (LADs), epigenomic marks, and gene expression in an in vitro model of breast cancer progression. Our results reveal that while the fundamental properties of topologically associating domains (TADs) are overall maintained, significant changes occur in the organization of compartments and subcompartments. These changes are closely correlated with alterations in the expression of oncogenic genes. We also observe a restructuring of TAD-TAD interactions, coinciding with a loss of spatial compartmentalization and radial positioning of the 3D genome. Notably, we identify a previously unrecognized interchromosomal insertion event, wherein a locus on chromosome 8 housing the MYC oncogene is inserted into a highly active subcompartment on chromosome 10. This insertion is accompanied by the formation of de novo enhancer contacts and activation of MYC, illustrating how structural genomic variants can alter the 3D genome to drive oncogenic states. In summary, our findings provide evidence for the loss of genome organization at multiple scales during breast cancer progression revealing novel relationships between genome 3D structure and oncogenic processes.
Matching journals
The top 3 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- MYC overexpression leads to increased chromatin interactions at superenhancers and c-Myc binding sites 97%
- Suv39h-catalysed H3K9me3 is critical for euchromatic genome organisation and the maintenance of gene transcription 97%
- Somatic structural variant formation is guided by and influences genome architecture 96%
Similar papers in this journal
Similar papers in this journal
- Cohesin promotes stochastic domain intermingling to ensure proper regulation of boundary-proximal genes 96%
- G-quadruplexes are promoter elements controlling nucleosome exclusion and RNA polymerase II pausing 96%
- Independence of 3D chromatin conformation and gene regulation during Drosophila dorsoventral patterning 95%
Similar papers in this journal
- Suppression of liquid-liquid phase separation by 1,6-hexanediol partially compromises the 3D genome organization in living cells 96%
- DNA elements tether canonical Polycomb Repressive Complex 1 to human genes 96%
- Epigenetic reprogramming of a distal developmental enhancer cluster drives SOX2 overexpression in breast and lung cancer 96%
"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.