Telomere shortening relaxes X chromosome inactivation and forces global transcriptome alterations

被引:46
作者
Schoeftner, Stefan [1 ]
Blanco, Raquel [1 ]
Lopez de Silanes, Isabel [1 ]
Munoz, Purificacion [1 ]
Gomez-Lopez, Gonzalo [2 ]
Flores, Juana M. [3 ]
Blasco, Maria A. [1 ]
机构
[1] CNIO, Spanish Natl Canc Ctr, Mol Oncol Program, Telomeres & Telomerase Grp, Madrid 28029, Spain
[2] CNIO, Spanish Natl Canc Ctr, Struct Biol & Biocomp Program, Bioinformat Unit, Madrid 28029, Spain
[3] Univ Complutense Madrid, Fac Vet, Anim Surg & Med Dept, E-28040 Madrid, Spain
关键词
aging; chromosome X inactivation; DNA damage; epigenetics; telomeres; DNA-DAMAGE; GENE-EXPRESSION; MAMMALIAN TELOMERES; STRESS-RESPONSE; STRAND BREAKS; MOUSE MODELS; HETEROCHROMATIN; MICE; PROTEIN; TRF2;
D O I
10.1073/pnas.0909265106
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Telomeres are heterochromatic structures at chromosome ends essential for chromosomal stability. Telomere shortening and the accumulation of dysfunctional telomeres are associated with organismal aging. Using telomerase-deficient TRF2-overexpressing mice (K5TRF2/Terc(-/-)) as a model for accelerated aging, we show that telomere shortening is paralleled by a gradual deregulation of the mammalian transcriptome leading to cumulative changes in a defined set of genes, including up-regulation of the mTOR and Akt survival pathways and down-regulation of cell cycle and DNA repair pathways. Increased DNA damage from dysfunctional telomeres leads to reduced deposition of H3K27me3 onto the inactive X chromosome (Xi), impaired association of the Xi with telomeric transcript accumulations (Tacs), and reactivation of an X chromosome-linked K5TRF2 transgene that is subjected to X-chromosome inactivation in female mice with sufficiently long telomeres. Exogenously induced DNA damage also disrupts Xi-Tacs, suggesting DNA damage at the origin of these alterations. Collectively, these findings suggest that critically short telomeres activate a persistent DNA damage response that alters gene expression programs in a nonstochastic manner toward cell cycle arrest and activation of survival pathways, as well as impacts the maintenance of epigenetic memory and nuclear organization, thereby contributing to organismal aging.
引用
收藏
页码:19387 / 19392
页数:6
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