Merck
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  • TDP1 suppresses chromosomal translocations and cell death induced by abortive TOP1 activity during gene transcription.

TDP1 suppresses chromosomal translocations and cell death induced by abortive TOP1 activity during gene transcription.

Nature communications (2023-11-10)
Diana Rubio-Contreras, Fernando Gómez-Herreros
ABSTRACT

DNA topoisomerase I (TOP1) removes torsional stress by transiently cutting one DNA strand. Such cuts are rejoined by TOP1 but can occasionally become abortive generating permanent protein-linked single strand breaks (SSBs). The repair of these breaks is initiated by tyrosyl-DNA phosphodiesterase 1 (TDP1), a conserved enzyme that unlinks the TOP1 peptide from the DNA break. Additionally, some of these SSBs can result in double strand breaks (DSBs) either during replication or by a poorly understood transcription-associated process. In this study, we identify these DSBs as a source of genome rearrangements, which are suppressed by TDP1. Intriguingly, we also provide a mechanistic explanation for the formation of chromosomal translocations unveiling an error-prone pathway that relies on the MRN complex and canonical non-homologous end-joining. Collectively, these data highlight the threat posed by TOP1-induced DSBs during transcription and demonstrate the importance of TDP1-dependent end-joining in protecting both gene transcription and genome stability.

MATERIALS
Product Number
Brand
Product Description

Sigma-Aldrich
Anti-phospho-Histone H2A.X (Ser139) Antibody, clone JBW301, clone JBW301, Upstate®, from mouse
Sigma-Aldrich
Anti-Topoisomerase I-DNA Covalent Complexes Antibody, clone 1.1A, clone 1.1A, from mouse
Sigma-Aldrich
DAPI, for nucleic acid staining