Telomere dysfunction alters the chemotherapeutic profile of transformed cells


Autoria(s): Lee, Kee-Ho; Rudolph, K. Lenhard; Ju, Yeun-Jin; Greenberg, Roger A.; Cannizzaro, Linda; Chin, Lynda; Weiler, Sarah R.; DePinho, Ronald A.
Data(s)

13/03/2001

Resumo

Telomerase inhibition has been touted as a novel cancer-selective therapeutic goal based on the observation of high telomerase levels in most cancers and the importance of telomere maintenance in long-term cellular growth and survival. Here, the impact of telomere dysfunction on chemotherapeutic responses was assessed in normal and neoplastic cells derived from telomerase RNA null (mTERC−/−) mice. Telomere dysfunction, rather than telomerase per se, was found to be the principal determinant governing chemosensitivity specifically to agents that induced double-stranded DNA breaks (DSB). Enhanced chemosensitivity in telomere dysfunctional cells was linked to therapy-induced fragmentation and multichromosomal fusions, whereas telomerase reconstitution restored genomic integrity and chemoresistance. Loss of p53 function muted the cytotoxic effects of DSB-inducing agents in cells with telomere dysfunction. Together, these results point to the combined use of DSB-inducing agents and telomere maintenance inhibition as an effective anticancer therapeutic approach particularly in cells with intact p53-dependent checkpoint responses.

Identificador

/pmc/articles/PMC30662/

/pubmed/11248087

http://dx.doi.org/10.1073/pnas.051629198

Idioma(s)

en

Publicador

The National Academy of Sciences

Direitos

Copyright © 2001, The National Academy of Sciences

Palavras-Chave #Biological Sciences
Tipo

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