Javascript must be enabled to continue!
Oxidative Stress Induces Telomere Dysfunction and Senescence by Replication Fork Arrest
View through CrossRef
Oxidative DNA damage, particularly 8-oxoguanine, represents the most frequent DNA damage in human cells, especially at the telomeric level. The presence of oxidative lesions in the DNA can hinder the replication fork and is able to activate the DNA damage response. In this study, we wanted to understand the mechanisms by which oxidative damage causes telomere dysfunction and senescence in human primary fibroblasts. After acute oxidative stress at telomeres, our data demonstrated a reduction in TRF1 and TRF2, which are involved in proper telomere replication and T-loop formation, respectively. Furthermore, we observed a higher level of γH2AX with respect to 53BP1 at telomeres, suggesting a telomeric replication fork stall rather than double-strand breaks. To confirm this finding, we studied the replication of telomeres by Chromosome Orientation-FISH (CO-FISH). The data obtained show an increase in unreplicated telomeres after hydrogen peroxide treatment, corroborating the idea that the presence of 8-oxoG can induce replication fork arrest at telomeres. Lastly, we analyzed the H3K9me3 histone mark after oxidative stress at telomeres, and our results showed an increase of this marker, most likely inducing the heterochromatinization of telomeres. These results suggest that 8-oxoG is fundamental in oxidative stress-induced telomeric damage, principally causing replication fork arrest.
Title: Oxidative Stress Induces Telomere Dysfunction and Senescence by Replication Fork Arrest
Description:
Oxidative DNA damage, particularly 8-oxoguanine, represents the most frequent DNA damage in human cells, especially at the telomeric level.
The presence of oxidative lesions in the DNA can hinder the replication fork and is able to activate the DNA damage response.
In this study, we wanted to understand the mechanisms by which oxidative damage causes telomere dysfunction and senescence in human primary fibroblasts.
After acute oxidative stress at telomeres, our data demonstrated a reduction in TRF1 and TRF2, which are involved in proper telomere replication and T-loop formation, respectively.
Furthermore, we observed a higher level of γH2AX with respect to 53BP1 at telomeres, suggesting a telomeric replication fork stall rather than double-strand breaks.
To confirm this finding, we studied the replication of telomeres by Chromosome Orientation-FISH (CO-FISH).
The data obtained show an increase in unreplicated telomeres after hydrogen peroxide treatment, corroborating the idea that the presence of 8-oxoG can induce replication fork arrest at telomeres.
Lastly, we analyzed the H3K9me3 histone mark after oxidative stress at telomeres, and our results showed an increase of this marker, most likely inducing the heterochromatinization of telomeres.
These results suggest that 8-oxoG is fundamental in oxidative stress-induced telomeric damage, principally causing replication fork arrest.
Related Results
Abstract A16: Wnt antagonist SFRP1 functions as secreted mediator of senescence
Abstract A16: Wnt antagonist SFRP1 functions as secreted mediator of senescence
Abstract
The purpose of this study was 1) to identify the mediator(s) of senescence that are secreted from senescent cells and induce senescence in an autocrine and ...
Telomere maintenance in African trypanosomes
Telomere maintenance in African trypanosomes
Telomere maintenance is essential for genome integrity and chromosome stability in eukaryotic cells harboring linear chromosomes, as telomere forms a specialized structure to mask ...
Mechanisms of polar arrest of a replication fork
Mechanisms of polar arrest of a replication fork
SummaryA DNA replication terminator sequence blocks an approaching replication fork when the moving replisome approaches from just one direction. The mechanism underlying polar arr...
Comparative phenotypic and molecular profiling of replicative and chemically-induced senescence in articular chondrocytes
Comparative phenotypic and molecular profiling of replicative and chemically-induced senescence in articular chondrocytes
Abstract
Osteoarthritis (OA) is a degenerative joint disease characterized by the accumulation of senescent chondrocytes, which drive inflamm...
Gear Shift Fork Stiffness Optimisation
Gear Shift Fork Stiffness Optimisation
<div class="section abstract">This paper presents a simulation of the stiffness of the shift fork of a manual transmission using contact pattern analysis and optistrut. All t...
Telomere Length of Hematopoietic Cells in Long-Term Post-Autograft Survivors: No Evidence of Accelerated Replicative Cell Senescence Despite the Persistent Reduction of Both Committed and Immature Progenitor Cell Compartments.
Telomere Length of Hematopoietic Cells in Long-Term Post-Autograft Survivors: No Evidence of Accelerated Replicative Cell Senescence Despite the Persistent Reduction of Both Committed and Immature Progenitor Cell Compartments.
Abstract
Telomere length is considered a valuable replicative capacity predictor of human hematopoietic stem cells. Indeed, a progressive telomere shortening affects...
Molecular and Cellular Responses to the Shortest Telomere in Saccharomyces cerevisiae
Molecular and Cellular Responses to the Shortest Telomere in Saccharomyces cerevisiae
Réponses moléculaires et cellulaires au télomère le plus court dans Saccharomyces cerevisiae
En l'absence de télomérase, le raccourcissement des télomères déclenche...
Telomere Length Shortening in Langerhans Cell Histiocytosis.
Telomere Length Shortening in Langerhans Cell Histiocytosis.
Abstract
The purpose of this study was to analyze telomere lengths in Langerhans Cell Histiocytosis (LCH). LCH is a clonally derived, proliferative disorder of pheno...

