bioRxiv · 10.1101/2021.11.13.468478
Poly ADP-ribosylation of SET8 leads to aberrant H4K20me1 domains in mammalian cells
Abstract
In mammalian cells, SET8 mediated Histone H4 Lys 20 monomethylation (H4K20me1) has been implicated in regulating mitotic condensation, DNA replication, DNA damage response, and gene expression. Here we show SET8, the only known enzyme for H4K20me1 is post-translationally poly ADP-ribosylated by PARP1 on lysine residues. PARP1 interacts with SET8 in a cell cycle-dependent manner. Poly ADP-ribosylation on SET8 renders it catalytically compromised, and degradation via ubiquitylation pathway. Knockdown of PARP1 led to an increase of SET8 protein levels, leading to aberrant H4K20me1 and H4K20me3 domains genome-wide. H4K20me1 is associated with higher gene transcription levels while the increase of H4K20me3 levels was predominant in DNA repeat elements correlating with modulation of chromatin states. Hence, SET8 mediated chromatin remodeling in mammalian cells are modulated by poly ADP-ribosylation by PARP1.
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Esteve, P.-O., Udayakumaran Nair Sunitha Kumary, V., Ruse, C., Chin, H. G., Pradhan, S.. 2021-11-13. Poly ADP-ribosylation of SET8 leads to aberrant H4K20me1 domains in mammalian cells. https://doi.org/10.1101/2021.11.13.468478
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