Author:
Baquero Juan Miguel,Benítez-Buelga Carlos,Rajagopal Varshni,Zhenjun Zhao,Torres-Ruiz Raúl,Müller Sarah,Hanna Bishoy M. F.,Loseva Olga,Wallner Olov,Michel Maurice,Rodríguez-Perales Sandra,Gad Helge,Visnes Torkild,Helleday Thomas,Benítez Javier,Osorio Ana
Abstract
AbstractThe most common oxidative DNA lesion is 8-oxoguanine which is mainly recognized and excised by the 8-oxoG DNA glycosylase 1 (OGG1), initiating the base excision repair (BER) pathway. Telomeres are particularly sensitive to oxidative stress (OS) which disrupts telomere homeostasis triggering genome instability. In the present study, we have investigated the effects of inactivating BER in OS conditions, by using a specific inhibitor of OGG1 (TH5487). We have found that in OS conditions, TH5487 blocks BER initiation at telomeres causing an accumulation of oxidized bases, that is correlated with telomere losses, micronuclei formation and mild proliferation defects. Moreover, the antimetabolite methotrexate synergizes with TH5487 through induction of intracellular reactive oxygen species (ROS) formation, which potentiates TH5487-mediated telomere and genome instability. Our findings demonstrate that OGG1 is required to protect telomeres from OS and present OGG1 inhibitors as a tool to induce oxidative DNA damage at telomeres, with the potential for developing new combination therapies for cancer treatment.
Publisher
Springer Science and Business Media LLC
Cited by
24 articles.
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