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An Excimer Clamp for Measuring Damaged-Base Excision by the DNA Repair Enzyme NTH1
Authors:Dr. Yong Woong Jun  David L. Wilson  Dr. Anna M. Kietrys  Elizabeth R. Lotsof  Savannah G. Conlon  Prof. Dr. Sheila S. David  Prof. Dr. Eric T. Kool
Affiliation:1. Department of Chemistry, Stanford University, Stanford, CA, 94305 USA;2. Department of Chemistry, University of California, Davis, Davis, CA, 95616 USA
Abstract:Direct measurement of DNA repair enzyme activities is important both for the basic study of cellular repair pathways as well as for potential new translational applications in their associated diseases. NTH1, a major glycosylase targeting oxidized pyrimidines, prevents mutations arising from this damage, and the regulation of NTH1 activity is important in resisting oxidative stress and in suppressing tumor formation. Herein, we describe a novel molecular strategy for the direct detection of damaged DNA base excision activity by a ratiometric fluorescence change. This strategy utilizes glycosylase-induced excimer formation of pyrenes, and modified DNA probes, incorporating two pyrene deoxynucleotides and a damaged base, enable the direct, real-time detection of NTH1 activity in vitro and in cellular lysates. The probe design was also applied in screening for potential NTH1 inhibitors, leading to the identification of a new small-molecule inhibitor with sub-micromolar potency.
Keywords:Basen-Exzisionsreparatur  DNA-Schädigung  Fluoreszenzsonden  Glykosylasen  Inhibitoren
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