Telomere dysfunction and tumour suppression: the senescence connection

Y Deng, SS Chan, S Chang - Nature reviews cancer, 2008 - nature.com
Y Deng, SS Chan, S Chang
Nature reviews cancer, 2008nature.com
Long-lived organisms such as humans have evolved several intrinsic tumour suppressor
mechanisms to combat the slew of oncogenic somatic mutations that constantly arise in
proliferating stem-cell compartments. One of these anticancer barriers is the telomere, a
specialized nucleoprotein complex that caps the ends of eukaryotic chromosome. Impaired
telomere function activates the canonical DNA damage response pathway that engages p53
to initiate apoptosis or replicative senescence. Here, we discuss how p53-dependent …
Abstract
Long-lived organisms such as humans have evolved several intrinsic tumour suppressor mechanisms to combat the slew of oncogenic somatic mutations that constantly arise in proliferating stem-cell compartments. One of these anticancer barriers is the telomere, a specialized nucleoprotein complex that caps the ends of eukaryotic chromosome. Impaired telomere function activates the canonical DNA damage response pathway that engages p53 to initiate apoptosis or replicative senescence. Here, we discuss how p53-dependent senescence induced by dysfunctional telomeres may be as potent as apoptosis in suppressing tumorigenesis in vivo.
nature.com