Mammalian Ku86 mediates chromosomal fusions and apoptosis caused by critically short telomeres
Open Access
- 1 May 2002
- journal article
- research article
- Published by Springer Nature in The EMBO Journal
- Vol. 21 (9), 2207-2219
- https://doi.org/10.1093/emboj/21.9.2207
Abstract
Here we analyze the functional interaction between Ku86 and telomerase at the mammalian telomere by studying mice deficient for both proteins. We show that absence of Ku86 prevents the end‐to‐end chromosomal fusions that result from critical telomere shortening in telomerase‐deficient mice. In addition, Ku86 deficiency rescues the male early germ cell apoptosis triggered by short telomeres in these mice. Together, these findings define a role for Ku86 in mediating chromosomal instability and apoptosis triggered by short telomeres. In addition, we show here that Ku86 deficiency results in telomerase‐dependent telomere elongation and in the fusion of random pairs of chromosomes in telomerase‐proficient cells, suggesting a model in which Ku86 keeps normal‐length telomeres less accessible to telomerase‐ mediated telomere lengthening and to DNA repair activities.Keywords
This publication has 43 references indexed in Scilit:
- Deletion of Ku86 causes early onset of senescence in miceProceedings of the National Academy of Sciences, 1999
- Ku Binds Telomeric DNA in VitroPublished by Elsevier ,1999
- Disease states associated with telomerase deficiency appear earlier in mice with short telomeresThe EMBO Journal, 1999
- Mammalian Telomeres End in a Large Duplex LoopCell, 1999
- p53 Deficiency Rescues the Adverse Effects of Telomere Loss and Cooperates with Telomere Dysfunction to Accelerate CarcinogenesisCell, 1999
- Short Dysfunctional Telomeres Impair Tumorigenesis in the INK4aΔ2/3 Cancer-Prone MouseCell, 1999
- Longevity, Stress Response, and Cancer in Aging Telomerase-Deficient MiceCell, 1999
- Telomere shortening in mTR-/- embryos is associated with failure to close the neural tubeThe EMBO Journal, 1999
- Yeast Ku as a Regulator of Chromosomal DNA End StructureScience, 1998
- Essential role of mouse telomerase in highly proliferative organsNature, 1998