Investigating site-selection mechanisms of retroviral integration in supercoiled DNA braids
Author(s) -
Giada Forte,
Davide Michieletto,
Davide Marenduzzo,
Enzo Orlandini
Publication year - 2021
Publication title -
journal of the royal society interface
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.655
H-Index - 139
eISSN - 1742-5689
pISSN - 1742-5662
DOI - 10.1098/rsif.2021.0229
Subject(s) - braid , dna , dna supercoil , genome , biology , computational biology , topology (electrical circuits) , biological system , physics , genetics , gene , materials science , mathematics , dna replication , combinatorics , composite material
We theoretically study the integration of short viral DNA in a DNA braid made up by two entwined double-stranded DNA molecules. We show that the statistics of single integration events substantially differ in the straight and buckled, or plectonemic, phase of the braid and are more likely in the latter. We further discover that integration is most likely close to plectoneme tips, where the larger bending energy helps overcome the associated energy barrier and that successive integration events are spatio-temporally correlated, suggesting a potential mechanistic explanation of clustered integration sites in host genomes. The braid geometry we consider provides a novel experimental set-up to quantify integration in a supercoiled substrate in vitro , and to better understand the role of double-stranded DNA topology during this process.
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