Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Dynamic behavior of DNA topoisomerase IIβ in response to DNA double-strand breaks

View through CrossRef
AbstractDNA topoisomerase II (Topo II) is crucial for resolving topological problems of DNA and plays important roles in various cellular processes, such as replication, transcription, and chromosome segregation. Although DNA topology problems may also occur during DNA repair, the possible involvement of Topo II in this process remains to be fully investigated. Here, we show the dynamic behavior of human Topo IIβ in response to DNA double-strand breaks (DSBs), which is the most harmful form of DNA damage. Live cell imaging coupled with site-directed DSB induction by laser microirradiation demonstrated rapid recruitment of EGFP-tagged Topo IIβ to the DSB site. Detergent extraction followed by immunofluorescence showed the tight association of endogenous Topo IIβ with DSB sites. Photobleaching analysis revealed that Topo IIβ is highly mobile in the nucleus. The Topo II catalytic inhibitors ICRF-187 and ICRF-193 reduced the Topo IIβ mobility and thereby prevented Topo IIβ recruitment to DSBs. Furthermore, Topo IIβ knockout cells exhibited increased sensitivity to bleomycin and decreased DSB repair mediated by homologous recombination (HR), implicating the role of Topo IIβ in HR-mediated DSB repair. Taken together, these results highlight a novel aspect of Topo IIβ functions in the cellular response to DSBs.
Title: Dynamic behavior of DNA topoisomerase IIβ in response to DNA double-strand breaks
Description:
AbstractDNA topoisomerase II (Topo II) is crucial for resolving topological problems of DNA and plays important roles in various cellular processes, such as replication, transcription, and chromosome segregation.
Although DNA topology problems may also occur during DNA repair, the possible involvement of Topo II in this process remains to be fully investigated.
Here, we show the dynamic behavior of human Topo IIβ in response to DNA double-strand breaks (DSBs), which is the most harmful form of DNA damage.
Live cell imaging coupled with site-directed DSB induction by laser microirradiation demonstrated rapid recruitment of EGFP-tagged Topo IIβ to the DSB site.
Detergent extraction followed by immunofluorescence showed the tight association of endogenous Topo IIβ with DSB sites.
Photobleaching analysis revealed that Topo IIβ is highly mobile in the nucleus.
The Topo II catalytic inhibitors ICRF-187 and ICRF-193 reduced the Topo IIβ mobility and thereby prevented Topo IIβ recruitment to DSBs.
Furthermore, Topo IIβ knockout cells exhibited increased sensitivity to bleomycin and decreased DSB repair mediated by homologous recombination (HR), implicating the role of Topo IIβ in HR-mediated DSB repair.
Taken together, these results highlight a novel aspect of Topo IIβ functions in the cellular response to DSBs.

Related Results

Topoisomerase Assays
Topoisomerase Assays
AbstractTopoisomerases are enzymes that play essential roles in DNA replication, transcription, chromosome segregation, and recombination. All cells have two major forms of DNA top...
Topo IIβ Gets to Work
Topo IIβ Gets to Work
DNA topoisomerases regulate conformational changes in DNA topology by catalyzing DNA strand breakage and rejoining. Topoisomerase IIβ (Topo IIβ) alters DNA conformation near gene p...
Abstract 1757: Elesclomol (STA-4783) is a potent inhibitor of topoisomerase II
Abstract 1757: Elesclomol (STA-4783) is a potent inhibitor of topoisomerase II
Abstract Elesclomol (STA-4783; N’1, N’3-dimethyl-N’1, N’3- bis(phenylcarbonothioyl)propanedihydrazide) is an anticancer drug that has received both fast track and or...
KAJIAN EFISIENSI PERENCANAAN PC-I GIRDER DENGAN MENGGUNAKAN SISTEM STRAND 0,5” DAN 0,6” TERHADAP KEKUATAN DAN BIAYA
KAJIAN EFISIENSI PERENCANAAN PC-I GIRDER DENGAN MENGGUNAKAN SISTEM STRAND 0,5” DAN 0,6” TERHADAP KEKUATAN DAN BIAYA
Prestressed concrete can be defined as concrete that given internal compressive stress such that it can reduce the tensile stress caused by external load to a certain condition. St...
Genome wide hypomethylation and youth-associated DNA gap reduction promoting DNA damage and senescence-associated pathogenesis
Genome wide hypomethylation and youth-associated DNA gap reduction promoting DNA damage and senescence-associated pathogenesis
Abstract Background: Age-associated epigenetic alteration is the underlying cause of DNA damage in aging cells. Two types of youth-associated DNA-protection epigenetic mark...

Back to Top