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Targeted and Persistent 8-Oxoguanine Base Damage at Telomeres Promotes Telomere Loss and Crisis.

Mol Cell. 2019-07; 
FouquerelElise,BarnesRyan P,UttamShikhar,WatkinsSimon C,BruchezMarcel P,OpreskoPatric
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Custom Vector Construction Guide RNAs were designed and validated for uniquely targeting the human OGG1 gene by Feng Zheng’s laboratory (Broad institute) (Sanjana et al., 2014), and were incorporated into pLentiCRISPR v2 vectors (GenScript). Get A Quote

摘要

Telomeres are essential for genome stability. Oxidative stress caused by excess reactive oxygen species (ROS) accelerates telomere shortening. Although telomeres are hypersensitive to ROS-mediated 8-oxoguanine (8-oxoG) formation, the biological effect of this common lesion at telomeres is poorly understood because ROS have pleiotropic effects. Here we developed a chemoptogenetic tool that selectively produces 8-oxoG only at telomeres. Acute telomeric 8-oxoG formation increased telomere fragility in cells lacking OGG1, the enzyme that removes 8-oxoG, but did not compromise cell survival. However, chronic telomeric 8-oxoG induction over time shortens telomeres and impairs cell growth. Accumulation of telo... More

关键词

8-oxoguanine,base excision repair,fluorogen,optogenetic,oxidative DNA damage,oxidative stress,photosensitizer,reactive oxygen species,replication stress,telomere cr