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Medical Toxicology Commons

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DNA Replication

Publication Year

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Full-Text Articles in Medical Toxicology

The C-Terminal Domain (Ctd) Of Human Dna Glycosylaseneil1 Is Required For Forming Berosome Repair Complex With Dna Replication Proteins At The Replicating Genome: Dominant Negative Function Of The Ctd, Pavana M. Hegde, Arijit Dutta, Shiladitya Sengupta, Joy Mitra, Sanjay Adhikari, Alan E. Tomkinson, Guo-Min Li, Istvan Boldogh, Tapas K. Hazra, Sankar Mitra, Muralidhar L. Hegde Aug 2015

The C-Terminal Domain (Ctd) Of Human Dna Glycosylaseneil1 Is Required For Forming Berosome Repair Complex With Dna Replication Proteins At The Replicating Genome: Dominant Negative Function Of The Ctd, Pavana M. Hegde, Arijit Dutta, Shiladitya Sengupta, Joy Mitra, Sanjay Adhikari, Alan E. Tomkinson, Guo-Min Li, Istvan Boldogh, Tapas K. Hazra, Sankar Mitra, Muralidhar L. Hegde

Toxicology and Cancer Biology Faculty Publications

The human DNA glycosylase NEIL1 was recently demonstrated to initiate prereplicative base excision repair (BER) of oxidized bases in the replicating genome, thus preventing mutagenic replication. A significant fraction of NEIL1 in cells is present in large cellular complexes containing DNA replication and other repair proteins, as shown by gel filtration. However, how the interaction of NEIL1 affects its recruitment to the replication site for prereplicative repair was not investigated. Here, we show that NEIL1 binarily interacts with the proliferating cell nuclear antigen clamp loader replication factor C, DNA polymerase δ, and DNA ligase I in the absence of DNA …


Replication Fork Regression In Vitro By The Werner Syndrome Protein (Wrn): Holliday Junction Formation, The Effect Of Leading Arm Structure And A Potential Role For Wrn Exonuclease Activity, Amrita Machwe, Liren Xiao, Robert G Lloyd, Edward Bolt, David K. Orren Jan 2007

Replication Fork Regression In Vitro By The Werner Syndrome Protein (Wrn): Holliday Junction Formation, The Effect Of Leading Arm Structure And A Potential Role For Wrn Exonuclease Activity, Amrita Machwe, Liren Xiao, Robert G Lloyd, Edward Bolt, David K. Orren

Toxicology and Cancer Biology Faculty Publications

The premature aging and cancer-prone disease Werner syndrome stems from loss of WRN protein function. WRN deficiency causes replication abnormalities, sensitivity to certain genotoxic agents, genomic instability and early replicative senescence in primary fibroblasts. As a RecQ helicase family member, WRN is a DNA-dependent ATPase and unwinding enzyme, but also possesses strand annealing and exonuclease activities. RecQ helicases are postulated to participate in pathways responding to replication blockage, pathways possibly initiated by fork regression. In this study, a series of model replication fork substrates were used to examine the fork regression capability of WRN. Our results demonstrate that WRN catalyzes …