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Telomerase-independent regulation of ATR by human telomerase RNA.

Martijn Kedde ,
Carlos le Sage ,
Anja Duursma ,
Eitan Zlotorynski ,
Bart van Leeuwen ,
Wouter Nijkamp ,
Roderick Beijersbergen ,
Reuven Agami

Abstract

The human telomerase RNA (hTR), together with the telomerase reverse transcriptase, hTERT, constitute the core components of telomerase that is essential for telomere maintenance. While hTR is ubiquitously expressed, hTERT is normally restricted to germ cells and certain stem cells, but both are often deregulated during tumorigenesis. Here, we investigated the effects of changes in hTR cellular levels. Surprisingly, while inhibition of hTR expression triggers a rapid, telomerase-independent, growth arrest associated with p53 and CHK1 activation, its increased expression neutralizes activation of these pathways in response to genotoxic stress. These hTR effects are mediated through ATR and are sufficiently strong to impair ATR-mediated DNA-damage checkpoint responses. Furthermore, in response to low UV radiation, which activates ATR, endogenous hTR levels increase irrespective of telomerase status. Thus, we uncovered a novel, telomerase-independent, function of hTR that restrains ATR activity and participates in the recovery of cells from UV radiation.

More about this publication

The Journal of biological chemistry

Volume 281
Issue nr. 52
Pages 40503-14
Publication date 29-12-2006

Full text links

Publisher website (DOI) 10.1074/jbc.M607676200
Europe PubMed Central 17098743
Pubmed 17098743

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