bioRxiv · 10.1101/678987
H3K9me2 orchestrates inheritance of spatial positioning of peripheral heterochromatin through mitosis
Abstract
Cell-type-specific 3D organization of the genome is unrecognizable during mitosis. It remains unclear how essential positional information is transmitted through cell division such that a daughter cell recapitulates the spatial genome organization of the parent. Lamina-associated domains (LADs) are regions of repressive heterochromatin positioned at the nuclear periphery that vary by cell type and contribute to cell-specific gene expression and identity. Here we show that histone 3 lysine 9 dimethylation (H3K9me2) is an evolutionarily conserved, specific mark of nuclear peripheral heterochromatin and that it is retained through mitosis. During mitosis, phosphorylation of histone 3 serine 10 temporarily shields the H3K9me2 mark allowing for dissociation of chromatin from the nuclear lamina. Using high-resolution 3D immuno-oligoFISH, we demonstrate that H3K9me2-enriched genomic regions, which are positioned at the nuclear lamina in interphase cells prior to mitosis, re-associate with the forming nuclear lamina before mitotic exit. The H3K9me2 modification of peripheral heterochromatin ensures that positional information is safeguarded through cell division such that individual LADs are re-established at the nuclear periphery in daughter nuclei. Thus, H3K9me2 acts as a 3D architectural mitotic guidepost. Our data establish a mechanism for epigenetic memory and inheritance of spatial organization of the genome.
Source connections
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Poleshko, A., Smith, C. L., Nguyen, S. C., Sivaramakrishnan, P., Murray, J. I., Lakadamyali, M., Joyce, E. F., Jain, R., Epstein, J. A.. 2019-06-21. H3K9me2 orchestrates inheritance of spatial positioning of peripheral heterochromatin through mitosis. https://doi.org/10.1101/678987
Cite the original work for its findings. Save a collection to share your selection of sources.