Telomeres are at the ends of chromosomes. Previous evidence suggests that laser-induced deoxyribose nucleic acid (DNA) breaks at chromosome ends during anaphase results in delayed cytokinesis. A possible explanation for this delay is that the DNA damage response (DDR) mechanism has been activated. We describe a live imaging method to study the effects of DDR activation following focal point near-infrared femtosecond laser microirradiation either at a single chromosome end or at a chromosome arm in mitotic anaphase cells. Laser microirradiation is used in combination with dual fluorescent labeling to monitor the co-localization of double-strand break marker γH2AX along with the DDR factors in PtK2 (Potorous tridactylus) cells. Laser-induced ...
<div><p>Analysis of accumulation of repair and checkpoint proteins at repair sites in yeast nuclei h...
Analysis of accumulation of repair and checkpoint proteins at repair sites in yeast nuclei has conve...
Proper DNA damage repair is essential for maintaining genomic integrity and stability of all living ...
Telomeres are essential for protecting chromosome ends not only from the replication-associated DNA ...
In this study the femtosecond near-IR and nanosecond green lasers are used to induce alterations in ...
Chromosome ends contain nucleoprotein structures known as telomeres. Damage to chromosome ends durin...
Genome maintenance is ensured by a variety of biochemical sensors and pathways that repair accumulat...
DNA damage is one of the most severe insults cells have to cope with. To identify the damage-associa...
Understanding the mitotic DNA damage response (DDR) is critical to our comprehension of cancer, prem...
DNA damage induces specific signaling and repair responses in the cell, which is critical for protec...
Laser microirradiation can be used to induce DNA damage with high spatial and temporal resolution, r...
DNA double strand breaks (DSBs) are amongst the most deleterious lesions induced within the cell fol...
Laser microirradiation is a powerful tool for real-time single-cell analysis of the DNA damage respo...
DNA double-strand breaks (DSBs) are biologically one of the most important cellular lesions and poss...
Our understanding of the mechanisms governing the response to DNA damage in higher eucaryotes crucia...
<div><p>Analysis of accumulation of repair and checkpoint proteins at repair sites in yeast nuclei h...
Analysis of accumulation of repair and checkpoint proteins at repair sites in yeast nuclei has conve...
Proper DNA damage repair is essential for maintaining genomic integrity and stability of all living ...
Telomeres are essential for protecting chromosome ends not only from the replication-associated DNA ...
In this study the femtosecond near-IR and nanosecond green lasers are used to induce alterations in ...
Chromosome ends contain nucleoprotein structures known as telomeres. Damage to chromosome ends durin...
Genome maintenance is ensured by a variety of biochemical sensors and pathways that repair accumulat...
DNA damage is one of the most severe insults cells have to cope with. To identify the damage-associa...
Understanding the mitotic DNA damage response (DDR) is critical to our comprehension of cancer, prem...
DNA damage induces specific signaling and repair responses in the cell, which is critical for protec...
Laser microirradiation can be used to induce DNA damage with high spatial and temporal resolution, r...
DNA double strand breaks (DSBs) are amongst the most deleterious lesions induced within the cell fol...
Laser microirradiation is a powerful tool for real-time single-cell analysis of the DNA damage respo...
DNA double-strand breaks (DSBs) are biologically one of the most important cellular lesions and poss...
Our understanding of the mechanisms governing the response to DNA damage in higher eucaryotes crucia...
<div><p>Analysis of accumulation of repair and checkpoint proteins at repair sites in yeast nuclei h...
Analysis of accumulation of repair and checkpoint proteins at repair sites in yeast nuclei has conve...
Proper DNA damage repair is essential for maintaining genomic integrity and stability of all living ...