Unravelling the mechanisms of Type 1A topoisomerases using single-molecule approaches

Dian Spakman, Julia A.M. Bakx, Andreas S. Biebricher, Erwin J.G. Peterman*, Gijs J.L. Wuite, Graeme A. King

*Corresponding author for this work

Research output: Contribution to JournalReview articleAcademicpeer-review

Abstract

Topoisomerases are essential enzymes that regulate DNA topology. Type 1A family topoisomerases are found in nearly all living organisms and are unique in that they require single-stranded (ss)DNA for activity. These enzymes are vital for maintaining supercoiling homeostasis and resolving DNA entanglements generated during DNA replication and repair. While the catalytic cycle of Type 1A topoisomerases has been long-known to involve an enzyme-bridged ssDNA gate that allows strand passage, a deeper mechanistic understanding of these enzymes has only recently begun to emerge. This knowledge has been greatly enhanced through the combination of biochemical studies and increasingly sophisticated single-molecule assays based on magnetic tweezers, optical tweezers, atomic force microscopy and Förster resonance energy transfer. In this review, we discuss how single-molecule assays have advanced our understanding of the gate opening dynamics and strand-passage mechanisms of Type 1A topoisomerases, as well as the interplay of Type 1A topoisomerases with partner proteins, such as RecQ-family helicases. We also highlight how these assays have shed new light on the likely functional roles of Type 1A topoisomerases in vivo and discuss recent developments in single-molecule technologies that could be applied to further enhance our understanding of these essential enzymes.

Original languageEnglish
Pages (from-to)5470-5492
Number of pages23
JournalNucleic acids research
Volume49
Issue number10
Early online date8 May 2021
DOIs
Publication statusPublished - 4 Jun 2021

Bibliographical note

Funding Information:
Netherlands Organization for Scientifc Research (NWO) [714.015.002], Chemical Sciences TOP grant (to G.J.L.W., E.J.G.P., G.A.K). Funding for open access charge: Netherlands Organization for Scientifc Research, Chemical Sciences TOP grant.

Publisher Copyright:
© 2021 The Author(s). Published by Oxford University Press on behalf of Nucleic Acids Research.

Copyright:
Copyright 2021 Elsevier B.V., All rights reserved.

Funding

Netherlands Organization for Scientifc Research (NWO) [714.015.002], Chemical Sciences TOP grant (to G.J.L.W., E.J.G.P., G.A.K). Funding for open access charge: Netherlands Organization for Scientifc Research, Chemical Sciences TOP grant.

FundersFunder number
Chemical Sciences TOP
Netherlands Organization for Scientifc Research
Chemical Sciences Top grant
NWO714.015.002
UK Research and Innovation26534

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