International audienceTelomere shortening in normal human cells causes replicative senescence, a p53-dependent growth arrest state, which is thought to represent an innate defence against tumour progression. However, although it has been postulated that critical telomere loss generates a 'DNA damage' signal, the signalling pathway(s) that alerts cells to short dysfunctional telomeres remains only partially defined. We show that senescence in human fibroblasts is associated with focal accumulation of gamma-H2AX and phosphorylation of Chk2, known mediators of the ataxia-telangiectasia mutated regulated signalling pathway activated by DNA double-strand breaks. Both these responses increased in cells grown beyond senescence through inactivation...
The DNA damage response (DDR) orchestrates DNA repair and halts cell cycle. If damage is not resolve...
SummaryThe shelterin complex [1] shapes and protects telomeric DNA from being processed as double st...
AbstractTelomeres are specialized structures protecting chromosomes against genome instability. Telo...
International audienceTelomere shortening in normal human cells causes replicative senescence, a p53...
Telomere shortening in normal human cells causes replicative senescence, a p53-dependent growth arre...
Telomere shortening in normal human cells causes replicative senescence, a p53-dependent growth arre...
Telomere shortening in normal human cells causes replicative senescence, a p53-dependent growth arre...
Telomere shortening in normal human cells causes replicative senescence, a p53-dependent growth arre...
grantor: University of TorontoNormal human cells have a finite life span and undergo senes...
Foci of phosphorylated histone H2AX and ATM are the surrogate markers of DNA double strand breaks. W...
grantor: University of TorontoNormal human cells have a finite life span and undergo senes...
Foci of phosphorylated histone H2AX and ATM are the surrogate markers of DNA double strand breaks. W...
Besides the well-understood DNA damage response via establishment of G2 checkpoint arrest, novel stu...
The shelterin complex [1] shapes and protects telomeric DNA from being processed as double strand br...
Abstract Background Secondary cultures of human fibroblasts display a finite lifespan ending at sene...
The DNA damage response (DDR) orchestrates DNA repair and halts cell cycle. If damage is not resolve...
SummaryThe shelterin complex [1] shapes and protects telomeric DNA from being processed as double st...
AbstractTelomeres are specialized structures protecting chromosomes against genome instability. Telo...
International audienceTelomere shortening in normal human cells causes replicative senescence, a p53...
Telomere shortening in normal human cells causes replicative senescence, a p53-dependent growth arre...
Telomere shortening in normal human cells causes replicative senescence, a p53-dependent growth arre...
Telomere shortening in normal human cells causes replicative senescence, a p53-dependent growth arre...
Telomere shortening in normal human cells causes replicative senescence, a p53-dependent growth arre...
grantor: University of TorontoNormal human cells have a finite life span and undergo senes...
Foci of phosphorylated histone H2AX and ATM are the surrogate markers of DNA double strand breaks. W...
grantor: University of TorontoNormal human cells have a finite life span and undergo senes...
Foci of phosphorylated histone H2AX and ATM are the surrogate markers of DNA double strand breaks. W...
Besides the well-understood DNA damage response via establishment of G2 checkpoint arrest, novel stu...
The shelterin complex [1] shapes and protects telomeric DNA from being processed as double strand br...
Abstract Background Secondary cultures of human fibroblasts display a finite lifespan ending at sene...
The DNA damage response (DDR) orchestrates DNA repair and halts cell cycle. If damage is not resolve...
SummaryThe shelterin complex [1] shapes and protects telomeric DNA from being processed as double st...
AbstractTelomeres are specialized structures protecting chromosomes against genome instability. Telo...