Analysis of accumulation of repair and checkpoint proteins at repair sites in yeast nuclei has conventionally used chemical agents, ionizing radiation or induction of endonucleases to inflict localized damage. In addition to these methods, similar studies in mammalian cells have used laser irradiation, which has the advantage that damage is inflicted at a specific nuclear region and at a precise time, and this allows accurate kinetic analysis of protein accumulation at DNA damage sites. We show here that it is feasible to use short pulses of near-infrared laser irradiation to inflict DNA damage in subnuclear regions of yeast nuclei by multiphoton absorption. In conjunction with use of fluorescently-tagged proteins, this allows quantitative ...
Proper recognition and repair of DNA damage is critical for the cell to protect its genomic integrit...
The formation of DNA lesions poses a constant threat to cellular stability. Repair of endogenously a...
Multiphoton laser scanning microscopy (MPLSM) is based on non-resonant simultaneous absorption of tw...
Analysis of accumulation of repair and checkpoint proteins at repair sites in yeast nuclei has conve...
<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...
DNA damage is one of the most severe insults cells have to cope with. To identify the damage-associa...
Our understanding of the mechanisms governing the response to DNA damage in higher eucaryotes crucia...
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...
Laser induced radiation microbeam technology for radiobiology research is undergoing rapid growth be...
Laser microirradiation is a powerful tool for real-time single-cell analysis of the DNA damage respo...
Telomeres are at the ends of chromosomes. Previous evidence suggests that laser-induced deoxyribose ...
Radiation-induced damage to the genomic DNA of cells may lead to errors in transcription and replica...
In this study the femtosecond near-IR and nanosecond green lasers are used to induce alterations in ...
Proper recognition and repair of DNA damage is critical for the cell to protect its genomic integrit...
The formation of DNA lesions poses a constant threat to cellular stability. Repair of endogenously a...
Multiphoton laser scanning microscopy (MPLSM) is based on non-resonant simultaneous absorption of tw...
Analysis of accumulation of repair and checkpoint proteins at repair sites in yeast nuclei has conve...
<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...
DNA damage is one of the most severe insults cells have to cope with. To identify the damage-associa...
Our understanding of the mechanisms governing the response to DNA damage in higher eucaryotes crucia...
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...
Laser induced radiation microbeam technology for radiobiology research is undergoing rapid growth be...
Laser microirradiation is a powerful tool for real-time single-cell analysis of the DNA damage respo...
Telomeres are at the ends of chromosomes. Previous evidence suggests that laser-induced deoxyribose ...
Radiation-induced damage to the genomic DNA of cells may lead to errors in transcription and replica...
In this study the femtosecond near-IR and nanosecond green lasers are used to induce alterations in ...
Proper recognition and repair of DNA damage is critical for the cell to protect its genomic integrit...
The formation of DNA lesions poses a constant threat to cellular stability. Repair of endogenously a...
Multiphoton laser scanning microscopy (MPLSM) is based on non-resonant simultaneous absorption of tw...