Human DNA topoisomerase I poisoning causes R loop–mediated genome instability attenuated by transcription factor IIS

Author:

Duardo Renée C.1ORCID,Marinello Jessica1ORCID,Russo Marco1ORCID,Morelli Sara1ORCID,Pepe Simona1ORCID,Guerra Federico1ORCID,Gómez-González Belén23ORCID,Aguilera Andrés23ORCID,Capranico Giovanni1ORCID

Affiliation:

1. Department of Pharmacy and Biotechnology, Alma Mater Studiorum–University of Bologna, via Selmi 3, 40126, Bologna, Italy.

2. Centro Andaluz de Biología Molecular y Medicina Regenerativa—CABIMER, Universidad de Sevilla–CSIC, Calle Américo Vespucio 24, 41092 Seville, Spain.

3. Departamento de Genetica, Facultad de Biología, Universidad de Sevilla, 41012 Seville, Spain.

Abstract

DNA topoisomerase I can contribute to cancer genome instability. During catalytic activity, topoisomerase I forms a transient intermediate, topoisomerase I–DNA cleavage complex (Top1cc) to allow strand rotation and duplex relaxation, which can lead to elevated levels of DNA-RNA hybrids and micronuclei. To comprehend the underlying mechanisms, we have integrated genomic data of Top1cc-triggered hybrids and DNA double-strand breaks (DSBs) shortly after Top1cc induction, revealing that Top1ccs increase hybrid levels with different mechanisms. DSBs are at highly transcribed genes in early replicating initiation zones and overlap with hybrids downstream of accumulated RNA polymerase II (RNAPII) at gene 5′-ends. A transcription factor IIS mutant impairing transcription elongation further increased RNAPII accumulation likely due to backtracking. Moreover, Top1ccs can trigger micronuclei when occurring during late G 1 or early/mid S, but not during late S. As micronuclei and transcription-replication conflicts are attenuated by transcription factor IIS, our results support a role of RNAPII arrest in Top1cc-induced transcription-replication conflicts leading to DSBs and micronuclei.

Publisher

American Association for the Advancement of Science (AAAS)

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