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Phosphatase 1 Nuclear Targeting Subunit Mediates Recruitment and Function  of Poly (ADP-Ribose) Polymerase 1 in DNA Repair | Cancer Research
Phosphatase 1 Nuclear Targeting Subunit Mediates Recruitment and Function of Poly (ADP-Ribose) Polymerase 1 in DNA Repair | Cancer Research

A Systematic Analysis of Factors Localized to Damaged Chromatin Reveals  PARP-Dependent Recruitment of Transcription Factors: Cell Reports
A Systematic Analysis of Factors Localized to Damaged Chromatin Reveals PARP-Dependent Recruitment of Transcription Factors: Cell Reports

Systematic analysis of DNA damage induction and DNA repair pathway  activation by continuous wave visible light laser micro-irradiation
Systematic analysis of DNA damage induction and DNA repair pathway activation by continuous wave visible light laser micro-irradiation

Webinar: Studying laser microirradiation induced DNA damage and repair  using live cell microscopy - YouTube
Webinar: Studying laser microirradiation induced DNA damage and repair using live cell microscopy - YouTube

UL31 accumulates at sites of laser microirradiation-induced DNA-damage....  | Download Scientific Diagram
UL31 accumulates at sites of laser microirradiation-induced DNA-damage.... | Download Scientific Diagram

Active and rapid accumulation of PH domains upon laser microirradiation...  | Download Scientific Diagram
Active and rapid accumulation of PH domains upon laser microirradiation... | Download Scientific Diagram

Systematic analysis of DNA damage induction and DNA repair pathway  activation by continuous wave visible light laser micro-irradiation
Systematic analysis of DNA damage induction and DNA repair pathway activation by continuous wave visible light laser micro-irradiation

Real-Time Imaging of DNA Damage in Yeast Cells Using Ultra-Short  Near-Infrared Pulsed Laser Irradiation
Real-Time Imaging of DNA Damage in Yeast Cells Using Ultra-Short Near-Infrared Pulsed Laser Irradiation

New Histone Incorporation Marks Sites of UV Repair in Human Cells -  ScienceDirect
New Histone Incorporation Marks Sites of UV Repair in Human Cells - ScienceDirect

Investigation of Protein Recruitment to DNA Lesions Using 405 Nm Laser  Micro-irradiation. - Abstract - Europe PMC
Investigation of Protein Recruitment to DNA Lesions Using 405 Nm Laser Micro-irradiation. - Abstract - Europe PMC

In Time and Space: Laser Microirradiation and the DNA Damage Response |  SpringerLink
In Time and Space: Laser Microirradiation and the DNA Damage Response | SpringerLink

Assessment of epigenetic mechanisms and DNA double-strand break repair  using laser micro-irradiation technique developed for hematological cells -  EBioMedicine
Assessment of epigenetic mechanisms and DNA double-strand break repair using laser micro-irradiation technique developed for hematological cells - EBioMedicine

LSD1 is recruited to sites of DNA damage. (a) UV laser microirradiation...  | Download Scientific Diagram
LSD1 is recruited to sites of DNA damage. (a) UV laser microirradiation... | Download Scientific Diagram

Application of Laser Micro-irradiation for Examination of Single and Double  Strand Break Repair in Mammalian Cells | Protocol
Application of Laser Micro-irradiation for Examination of Single and Double Strand Break Repair in Mammalian Cells | Protocol

FKBP25 participates in DNA double-strand break repair
FKBP25 participates in DNA double-strand break repair

A Systematic Analysis of Factors Localized to Damaged Chromatin Reveals  PARP-Dependent Recruitment of Transcription Factors: Cell Reports
A Systematic Analysis of Factors Localized to Damaged Chromatin Reveals PARP-Dependent Recruitment of Transcription Factors: Cell Reports

DNA double-strand breaks promote methylation of histone H3 on lysine 9 and  transient formation of repressive chromatin | PNAS
DNA double-strand breaks promote methylation of histone H3 on lysine 9 and transient formation of repressive chromatin | PNAS

Figure 3. | NR1D1 Recruitment to Sites of DNA Damage Inhibits Repair and Is  Associated with Chemosensitivity of Breast Cancer | Cancer Research
Figure 3. | NR1D1 Recruitment to Sites of DNA Damage Inhibits Repair and Is Associated with Chemosensitivity of Breast Cancer | Cancer Research

Figure 4 from Poly(ADP-ribosyl)ation-dependent Transient Chromatin  Decondensation and Histone Displacement following Laser Microirradiation* |  Semantic Scholar
Figure 4 from Poly(ADP-ribosyl)ation-dependent Transient Chromatin Decondensation and Histone Displacement following Laser Microirradiation* | Semantic Scholar

Figure 4 | ERCC1–XPF targeting to psoralen–DNA crosslinks depends on XPA  and FANCD2 | SpringerLink
Figure 4 | ERCC1–XPF targeting to psoralen–DNA crosslinks depends on XPA and FANCD2 | SpringerLink

Assessment of epigenetic mechanisms and DNA double-strand break repair  using laser micro-irradiation technique developed for hematological cells -  ScienceDirect
Assessment of epigenetic mechanisms and DNA double-strand break repair using laser micro-irradiation technique developed for hematological cells - ScienceDirect

Laser Microirradiation to Study In Vivo Cellular Responses to Simple and  Complex DNA Damage | Protocol
Laser Microirradiation to Study In Vivo Cellular Responses to Simple and Complex DNA Damage | Protocol

Figure 1 from , RNF 8 Repair Independent of ATM , MDC 1 , and  Ubiquitylation , and Double-Strand DNA Poly ( ADP-Ribose ) Activation , BAL  1 and Its Partner E 3 Ligase , BBAP , Link | Semantic Scholar
Figure 1 from , RNF 8 Repair Independent of ATM , MDC 1 , and Ubiquitylation , and Double-Strand DNA Poly ( ADP-Ribose ) Activation , BAL 1 and Its Partner E 3 Ligase , BBAP , Link | Semantic Scholar

PARP1-dependent recruitment of KDM4D histone demethylase to DNA damage  sites promotes double-strand break repair | PNAS
PARP1-dependent recruitment of KDM4D histone demethylase to DNA damage sites promotes double-strand break repair | PNAS

Laser Microirradiation to Study In Vivo Cellular Responses to Simple and  Complex DNA Damage | Protocol
Laser Microirradiation to Study In Vivo Cellular Responses to Simple and Complex DNA Damage | Protocol

Assessment of epigenetic mechanisms and DNA double-strand break repair  using laser micro-irradiation technique developed for hematological cells -  EBioMedicine
Assessment of epigenetic mechanisms and DNA double-strand break repair using laser micro-irradiation technique developed for hematological cells - EBioMedicine

Visualizing DNA Repair Proteins with the FLUOVIEW FV3000 Confocal  Microscope | Olympus LS
Visualizing DNA Repair Proteins with the FLUOVIEW FV3000 Confocal Microscope | Olympus LS