53BP1 governs a specialized, context-specific branch of the classical non-homologous end joining DNA double-strand break repair pathway. Mice lacking 53bp1 (also known as Trp53bp1) are immunodeficient owing to a complete loss of immunoglobulin classswitch recombination1,2, and reduced fidelity of long-range V(D)J recombination3. The 53BP1-dependent pathway is also responsible for pathological joining events at dysfunctional telomeres4, and its unrestricted activity in Brca1-deficient cellular and tumour models causes genomic instability and oncogenesis5–7. Cells that lack core non-homologous end joining proteins are profoundly radiosensitive8, unlike 53BP1-deficient cells9,10, which suggests that 53BP1 and its co-factors act on specific DNA...
53BP1 is a DNA damage response (DDR) factor that gained notoriety because it determines the efficacy...
Correct joining of broken chromosomes is indispensable to prevent cell death, ageing and cancer. Two...
SummaryThe DNA damage response (DDR) protein 53BP1 protects DNA ends from excessive resection in G1,...
53BP1 governs a specialized, context-specific branch of the classical non-homologous end joining DNA...
53BP1 is a chromatin-binding protein that regulates the repair of DNA double-strand breaks by suppre...
DNA end resection is believed to be a step that influences the choice between the two major DNA doub...
DNA double-strand break (DSB) signalling and repair is crucial to preserve genomic integrity and mai...
The protein p53 binding protein one (53BP1) was discovered in a yeast two-hybrid screen that used th...
The cellular response to DNA double-strand breaks (DSB) is principally the result of two competing r...
53BP1 can influence the type of DNA repair at DSBs (1) as seen in im-munoglobulin gene rearrangement...
International audienceSHLD1 is part of the Shieldin (SHLD) complex, which acts downstream of 53BP1 t...
Loss of p53, a transcription factor activated by cellular stress, is a frequent event in cancer. The...
Loss of p53, a transcription factor activated by cellular stress, is a frequent event in cancer. The...
Double-strand breaks (DSBs) are toxic lesions that can be generated by exposure to genotoxic agents ...
In DNA repair, the resection of double-strand breaks dictates the choice between homology-directed r...
53BP1 is a DNA damage response (DDR) factor that gained notoriety because it determines the efficacy...
Correct joining of broken chromosomes is indispensable to prevent cell death, ageing and cancer. Two...
SummaryThe DNA damage response (DDR) protein 53BP1 protects DNA ends from excessive resection in G1,...
53BP1 governs a specialized, context-specific branch of the classical non-homologous end joining DNA...
53BP1 is a chromatin-binding protein that regulates the repair of DNA double-strand breaks by suppre...
DNA end resection is believed to be a step that influences the choice between the two major DNA doub...
DNA double-strand break (DSB) signalling and repair is crucial to preserve genomic integrity and mai...
The protein p53 binding protein one (53BP1) was discovered in a yeast two-hybrid screen that used th...
The cellular response to DNA double-strand breaks (DSB) is principally the result of two competing r...
53BP1 can influence the type of DNA repair at DSBs (1) as seen in im-munoglobulin gene rearrangement...
International audienceSHLD1 is part of the Shieldin (SHLD) complex, which acts downstream of 53BP1 t...
Loss of p53, a transcription factor activated by cellular stress, is a frequent event in cancer. The...
Loss of p53, a transcription factor activated by cellular stress, is a frequent event in cancer. The...
Double-strand breaks (DSBs) are toxic lesions that can be generated by exposure to genotoxic agents ...
In DNA repair, the resection of double-strand breaks dictates the choice between homology-directed r...
53BP1 is a DNA damage response (DDR) factor that gained notoriety because it determines the efficacy...
Correct joining of broken chromosomes is indispensable to prevent cell death, ageing and cancer. Two...
SummaryThe DNA damage response (DDR) protein 53BP1 protects DNA ends from excessive resection in G1,...