Annealing helicase HARP closes RPA-stabilized DNA bubbles non-processively

Journal Article (2017)
Author(s)

D.R. Burnham (TU Delft - BN/Cees Dekker Lab)

B. Nijholt (TU Delft - QN/Akhmerov Group)

Iwijn De Vlaminck (TU Delft - BN/Cees Dekker Lab)

Jinhua Quan (Harvard Medical School)

Timur Yusufzai (Harvard Medical School)

Cees Dekker (TU Delft - BN/Cees Dekker Lab)

BN/Cees Dekker Lab
Copyright
© 2017 D.R. Burnham, B. Nijholt, I. de Vlaminck, Jinhua Quan, Timur Yusufzai, C. Dekker
DOI related publication
https://doi.org/10.1093/nar/gkx147
More Info
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Publication Year
2017
Language
English
Copyright
© 2017 D.R. Burnham, B. Nijholt, I. de Vlaminck, Jinhua Quan, Timur Yusufzai, C. Dekker
BN/Cees Dekker Lab
Issue number
8
Volume number
45
Pages (from-to)
4687-4695
Reuse Rights

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Abstract

We investigate the mechanistic nature of the Snf2 family protein HARP, mutations of which are responsible for Schimke immuno-osseous dysplasia. Using a single-molecule magnetic tweezers assay, we construct RPA-stabilized DNA bubbles within torsionally constrained DNA to investigate the annealing action of HARP on a physiologically relevant substrate. We find that HARP closes RPA-stabilized bubbles in a slow reaction, taking on the order of tens of minutes for ∼600 bp of DNA to be re-annealed. The data indicate that DNA re-anneals through the removal of RPA, which is observed as clear steps in the bubbleclosing traces. The dependence of the closing rate on both ionic strength and HARP concentration indicates that removal of RPA occurs via an association-dissociation mechanism where HARP does not remain associated with the DNA. The enzyme exhibits classical Michaelis-Menten kinetics and acts cooperatively with a Hill coefficient of 3 ± 1. Our work also allows the determination of some important features of RPA-bubble structures at low supercoiling, including the existence of multiple bubbles and that RPA molecules are mis-registered on the two strands.