Abstract
Topoisomerase 1 (TOP1) generates transient nicks in the DNA to relieve torsional stress encountered during the cellular processes of transcription, replication, and recombination. At the site of the nick there is a covalent linkage of TOP1 with DNA via a tyrosine residue. This reversible TOP1-cleavage complex intermediate can become trapped on DNA by TOP1 poisons such as camptothecin, or by collision with replication or transcription machinery, thereby causing protein-linked DNA single- or double-strand breaks and resulting in cell death. Tyrosyl-DNA phosphodiesterase 1 (TDP1) is a key enzyme involved in the repair of TOP1-associated DNA breaks via hydrolysis of 3′-phosphotyrosine bonds. Inhibition of TDP1 is therefore an attractive strategy for targeting cancer cells in conjunction with TOP1 poisons. Existing methods for monitoring the phosphodiesterase activity of TDP1 are generally gel based or of high cost. Here we report a novel, oligonucleotide-based fluorescence assay that is robust, sensitive, and suitable for high-throughput screening of both fragment and small compound libraries for the detection of TDP1 inhibitors. We further validated the assay using whole cell extracts, extending its potential application to determine of TDP1 activity in clinical samples from patients undergoing chemotherapy.
Highlights
Topoisomerase 1 (TOP1) generates transient nicks in the DNA to relieve torsional stress encountered during the cellular processes of transcription, replication, and recombination
We focused on determining the tyrosyl DNA phosphodiesterase activity of Tyrosyl-DNA phosphodiesterase 1 (TDP1), which is the preferred activity in vivo and in vitro, and is likely to be exploited in conjunction with camptothecin-derived protocols for cancer therapy
We describe the combination of Gyrasol assay technology (Fig. 1) with a fluorescent oligonucleotide substrate in order to identify novel TDP1 inhibitors
Summary
Topoisomerase 1 (TOP1) generates transient nicks in the DNA to relieve torsional stress encountered during the cellular processes of transcription, replication, and recombination. We report a novel, oligonucleotide-based fluorescence assay that is robust, sensitive, and suitable for high-throughput screening of both fragment and small compound libraries for the detection of TDP1 inhibitors. 1 Abbreviations used: ATA, aurintricarboxylic acid; CPT, camptothecin; DSB, doublestrand breaks; SSB, single-strand breaks; TDP1, tyrosyl-DNA-phosphodiesterase 1; TOP1, Topoisomerase 1; TOP1-CC, TOP1-DNA intermediates are termed cleavage complexes; WCE, whole cell extracts.
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