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Aprataxin resolves adenylated RNA-DNA junctions to maintain genome integrity

Nature. 2015; 
Tumbale P, Williams JS, Schellenberg MJ, Kunkel TA, Williams RS.
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Codon Optimization … A ∼6-fold higher k cat /K m for 5′-AMP RNA–DNA versus 5′-AMP SSB indicates that human APTX displays an in vitro preference for the RNA … An Escherichia coli codon-optimized coding sequence (GenScript) facilitated robust recombinant overexpression of human APTX … Get A Quote

摘要

Faithful maintenance and propagation of eukaryotic genomes is ensured by three-step DNA ligation reactions used by ATP-dependent DNA ligases. Paradoxically, when DNA ligases encounter nicked DNA structures with abnormal DNA termini, DNA ligase catalytic activity can generate and/or exacerbate DNA damage through abortive ligation that produces chemically adducted, toxic 5'-adenylated (5'-AMP) DNA lesions. Aprataxin (APTX) reverses DNA adenylation but the context for deadenylation repair is unclear. Here we examine the importance of APTX to RNase-H2-dependent excision repair (RER) of a lesion that is very frequently introduced into DNA, a ribonucleotide. We show that ligases generate adenylated 5' ends containing... More

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