Genome-wide prediction of topoisomerase IIβ binding by architectural factors and chromatin accessibility

Author:

Martínez-García Pedro ManuelORCID,García-Torres MiguelORCID,Divina FedericoORCID,Terrón-Bautista JoséORCID,Delgado-Sainz Irene,Gómez-Vela FranciscoORCID,Cortés-Ledesma FelipeORCID

Abstract

DNA topoisomerase II-β (TOP2B) is fundamental to remove topological problems linked to DNA metabolism and 3D chromatin architecture, but its cut-and-reseal catalytic mechanism can accidentally cause DNA double-strand breaks (DSBs) that can seriously compromise genome integrity. Understanding the factors that determine the genome-wide distribution of TOP2B is therefore not only essential for a complete knowledge of genome dynamics and organization, but also for the implications of TOP2-induced DSBs in the origin of oncogenic translocations and other types of chromosomal rearrangements. Here, we conduct a machine-learning approach for the prediction of TOP2B binding using publicly available sequencing data. We achieve highly accurate predictions, with accessible chromatin and architectural factors being the most informative features. Strikingly, TOP2B is sufficiently explained by only three features: DNase I hypersensitivity, CTCF and cohesin binding, for which genome-wide data are widely available. Based on this, we develop a predictive model for TOP2B genome-wide binding that can be used across cell lines and species, and generate virtual probability tracks that accurately mirror experimental ChIP-seq data. Our results deepen our knowledge on how the accessibility and 3D organization of chromatin determine TOP2B function, and constitute a proof of principle regarding the in silico prediction of sequence-independent chromatin-binding factors.

Funder

Spanish Goverment and European Regional Development Fund

H2020 European Research Council

Andalusian Regional Government

Publisher

Public Library of Science (PLoS)

Subject

Computational Theory and Mathematics,Cellular and Molecular Neuroscience,Genetics,Molecular Biology,Ecology,Modeling and Simulation,Ecology, Evolution, Behavior and Systematics

Reference61 articles.

1. All tangled up: How cells direct, manage and exploit topoisomerase function;SM Vos;Nature Reviews Molecular Cell Biology,2011

2. DNA topoisomerase II and its growing repertoire of biological functions;JL Nitiss;Nature Reviews Cancer,2009

3. Roles of eukaryotic topoisomerases in transcription, replication and genomic stability;Y Pommier;Nature Reviews Molecular Cell Biology,2016

4. The DNA cleavage reaction of topoisomerase II: Wolf in sheep’s clothing;JE Deweese;Nucleic Acids Research,2009

5. Induction of apoptosis by depletion of DNA topoisomerase IIα in mammalian cells;N Akimitsu;Biochemical and Biophysical Research Communications,2003

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