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O-GlcNAcylation Affects the Pathway Choice of DNA Double-Strand Break Repair

Averbek, Sera ; Jakob, Burkhard ; Durante, Marco ; Averbeck, Nicole B. (2024)
O-GlcNAcylation Affects the Pathway Choice of DNA Double-Strand Break Repair.
In: International Journal of Molecular Sciences, 2021, 22 (11)
doi: 10.26083/tuprints-00022299
Article, Secondary publication, Publisher's Version

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Item Type: Article
Type of entry: Secondary publication
Title: O-GlcNAcylation Affects the Pathway Choice of DNA Double-Strand Break Repair
Language: English
Date: 12 January 2024
Place of Publication: Darmstadt
Year of primary publication: 2021
Place of primary publication: Basel
Publisher: MDPI
Journal or Publication Title: International Journal of Molecular Sciences
Volume of the journal: 22
Issue Number: 11
Collation: 20 Seiten
DOI: 10.26083/tuprints-00022299
Corresponding Links:
Origin: Secondary publication DeepGreen
Abstract:

Exposing cells to DNA damaging agents, such as ionizing radiation (IR) or cytotoxic chemicals, can cause DNA double-strand breaks (DSBs), which are crucial to repair to maintain genetic integrity. O-linked β-N-acetylglucosaminylation (O-GlcNAcylation) is a post-translational modification (PTM), which has been reported to be involved in the DNA damage response (DDR) and chromatin remodeling. Here, we investigated the impact of O-GlcNAcylation on the DDR, DSB repair and chromatin status in more detail. We also applied charged particle irradiation to analyze differences of O-GlcNAcylation and its impact on DSB repair in respect of spatial dose deposition and radiation quality. Various techniques were used, such as the γH2AX foci assay, live cell microscopy and Fluorescence Lifetime Microscopy (FLIM) to detect DSB rejoining, protein accumulation and chromatin states after treating the cells with O-GlcNAc transferase (OGT) or O-GlcNAcase (OGA) inhibitors. We confirmed that O-GlcNAcylation of MDC1 is increased upon irradiation and identified additional repair factors related to Homologous Recombination (HR), CtIP and BRCA1, which were increasingly O-GlcNAcyated upon irradiation. This is consistent with our findings that the function of HR is affected by OGT inhibition. Besides, we found that OGT and OGA activity modulate chromatin compaction states, providing a potential additional level of DNA-repair regulation.

Uncontrolled Keywords: O-GlcNAcylation, DNA-DSB repair, chromatin remodeling, high LET, particle irradiation, ionizing radiation
Status: Publisher's Version
URN: urn:nbn:de:tuda-tuprints-222999
Additional Information:

This article belongs to the Special Issue Molecular Mechanisms Safeguarding Genome Integrity in DNA Replication, Repair and Transcription

Classification DDC: 500 Science and mathematics > 530 Physics
500 Science and mathematics > 570 Life sciences, biology
Divisions: 10 Department of Biology > Radiation Biology and DNA Repair
05 Department of Physics > Institute for Condensed Matter Physics
Date Deposited: 12 Jan 2024 13:38
Last Modified: 06 Feb 2024 08:03
SWORD Depositor: Deep Green
URI: https://tuprints.ulb.tu-darmstadt.de/id/eprint/22299
PPN: 515255653
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