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Published on: August 21, 2013
KAP1 depletion increases PML nuclear body number in concert with ultrastructural changes in chromatin
Rosemarie Kepkay1, Kathleen M Attwood, Yael Ziv
1Department of Pathology, Dalhousie University, Halifax, NS, Canada.
Abstract:
The promyelocytic leukemia (PML) protein is the main structural component of subnuclear domains termed PML nuclear bodies (PML NBs), which are implicated in tumor suppression by regulating apoptosis, cell senescence, and DNA repair. Previously, we demonstrated that ATM kinase can regulate changes in PML NB number in response to DNA double-strand breaks (DSBs). PML NBs make extensive contacts with chromatin and ATM mediates DNA damage-dependent changes in chromatin structure in part by the phosphorylation of the KRAB-associated protein 1 (KAP1) at S824. We now demonstrate that in the absence of DNA damage, reduced KAP1 expression results in a constitutive increase in PML NB number in both human U2-OS cells and normal human diploid fibroblasts. This increase in PML NB number correlated with decreased nuclear lamina-associated heterochromatin and a 30% reduction in chromatin density as observed by electron microscopy, which is reminiscent of DNA damaged chromatin. These changes in chromatin ultrastructure also correlated with increased histone H4 acetylation, and treatment with the HDAC inhibitor TSA failed to further increase PML NB number. Although PML NB number could be restored by complementation with wild-type KAP1, both the loss of KAP1 or complementation with phospho-mutants of KAP1 inhibited the early increase in PML NB number and reduced the fold induction of PML NBs by 25-30% in response to etoposide-induced DNA DSBs. Together these data implicate KAP1-dependent changes in chromatin structure as one possible mechanism by which ATM may regulate PML NB number in response to DNA damage.
Insights
Reduced KAP1 expression increases promyelocytic leukemia nuclear body (PML NB) number, altering chromatin structure. This suggests KAP1 influences PML NB regulation in response to DNA damage.
Area of Science:
- Cell Biology
- Molecular Biology
- Cancer Research
Background:
- Promyelocytic leukemia (PML) protein forms PML nuclear bodies (PML NBs), crucial for tumor suppression via apoptosis, senescence, and DNA repair.
- ATM kinase regulates PML NB number changes following DNA double-strand breaks (DSBs).
- ATM affects chromatin structure post-DNA damage, partly through phosphorylating KRAB-associated protein 1 (KAP1) at S824.
Purpose of the Study:
- To investigate the role of KAP1 in regulating PML NB number and chromatin structure.
- To determine if KAP1-dependent chromatin changes mediate ATM's regulation of PML NBs.
Main Methods:
- Reduced KAP1 expression in human U2-OS cells and fibroblasts.
- Electron microscopy to assess chromatin density and ultrastructure.
- Histone acetylation assays and HDAC inhibitor treatment (TSA).
- Complementation assays with wild-type and mutant KAP1.
- Etoposide treatment to induce DNA DSBs.
Main Results:
- Reduced KAP1 expression constitutively increased PML NB number.
- This increase correlated with decreased heterochromatin and chromatin density, resembling DNA-damaged chromatin.
- Increased histone H4 acetylation was observed; TSA did not further increase PML NB number.
- Loss or mutation of KAP1 impaired PML NB number increase upon DNA damage.
Conclusions:
- KAP1 influences PML NB number and chromatin structure independently of DNA damage.
- KAP1-dependent chromatin alterations are implicated in ATM's regulation of PML NBs during DNA damage response.
- This study highlights a novel mechanism linking chromatin regulation to PML NB dynamics.
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