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dc.creatorSuma, A
dc.creatorStopar, A
dc.creatorNicholson, AW
dc.creatorCastronovo, M
dc.creatorCarnevale, V
dc.date.accessioned2020-12-10T17:32:18Z
dc.date.available2020-12-10T17:32:18Z
dc.date.issued2020-05-21
dc.identifier.issn0305-1048
dc.identifier.issn1362-4962
dc.identifier.doihttp://dx.doi.org/10.34944/dspace/4252
dc.identifier.other32043111 (pubmed)
dc.identifier.urihttp://hdl.handle.net/20.500.12613/4270
dc.description.abstract© The Author(s) 2020. Published by Oxford University Press on behalf of Nucleic Acids Research. We used coarse-grained molecular dynamics simulations to characterize the global and local mechanical properties of a DNA origami triangle nanostructure. The structure presents two metastable conformations separated by a free energy barrier that is lowered upon omission of four specific DNA staples (defect). In contrast, only one stable conformation is present upon removing eight staples. The metastability is explained in terms of the intrinsic conformations of the three trapezoidal substructures. We computationally modeled the local accessibility to endonucleases, to predict the reactivity of twenty sites, and found good agreement with the experimental data. We showed that global fluctuations affect local reactivity: the removal of the DNA staples increased the computed accessibility to a restriction enzyme, at sites as distant as 40 nm, due to an increase in global fluctuation. These results raise the intriguing possibility of the rational engineering of allosterically modulated DNA origami.
dc.format.extent4672-4680
dc.language.isoen
dc.relation.haspartNucleic acids research
dc.relation.isreferencedbyOxford University Press (OUP)
dc.rightsCC BY
dc.rights.urihttp://creativecommons.org/licenses/by/4.0/
dc.subjectAllosteric Regulation
dc.subjectBase Sequence
dc.subjectBiomechanical Phenomena
dc.subjectDNA
dc.subjectEndodeoxyribonucleases
dc.subjectMolecular Dynamics Simulation
dc.subjectNanostructures
dc.subjectNucleic Acid Conformation
dc.titleGlobal and local mechanical properties control endonuclease reactivity of a DNA origami nanostructure
dc.typeArticle
dc.type.genreJournal Article
dc.relation.doi10.1093/nar/gkaa080
dc.ada.noteFor Americans with Disabilities Act (ADA) accommodation, including help with reading this content, please contact scholarshare@temple.edu
dc.creator.orcidCarnevale, Vincenzo|0000-0002-0447-1278
dc.date.updated2020-12-10T17:32:13Z
refterms.dateFOA2020-12-10T17:32:18Z


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