Please use this identifier to cite or link to this item: https://doi.org/10.1038/s41598-017-09104-5
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dc.titleOncofetal HMGA2 effectively curbs unconstrained (+) and (-) DNA supercoiling
dc.contributor.authorZhao X.
dc.contributor.authorPeter S.
dc.contributor.authorDröge P.
dc.contributor.authorYan J.
dc.date.accessioned2020-09-09T04:53:58Z
dc.date.available2020-09-09T04:53:58Z
dc.date.issued2017
dc.identifier.citationZhao X., Peter S., Dröge P., Yan J. (2017). Oncofetal HMGA2 effectively curbs unconstrained (+) and (-) DNA supercoiling. Scientific Reports 7 (1) : 8440. ScholarBank@NUS Repository. https://doi.org/10.1038/s41598-017-09104-5
dc.identifier.issn20452322
dc.identifier.urihttps://scholarbank.nus.edu.sg/handle/10635/175179
dc.description.abstractHMGA2 belongs to the family of the high mobility group (HMG) proteins. It binds DNA via three AT-hook domains to the minor groove of adenine-thymine (AT) rich DNA. Recently, a new function of HMGA2 as a replication fork chaperone that protects stem and cancer cells from replication fork collapse induced by chemotherapeutic agents was uncovered, suggesting a previously uncharacterized binding at replication forks. In this study, we examined HMGA2 binding to four DNA structures relevant to replication forks, namely ds DNA, ss DNA, forked DNA and supercoiled DNA plectonemes. We detected HMGA2 binding to supercoiled DNA at the lowest concentration and this binding mode transiently stabilizes the supercoiled plectonemes against relaxation by type I topoisomerase. Together, these findings suggest a plausible mechanism how fork regression and collapse are attenuated by HMGA2 during replication stress, i.e. through transient stabilization of positively supercoiled plectonemes in the parental duplex. © 2017 The Author(s).
dc.sourceUnpaywall 20200831
dc.subjectDNA
dc.subjecthigh mobility group A2 protein
dc.subjectprotein binding
dc.subjectrecombinant protein
dc.subjectsingle stranded DNA
dc.subjectchemistry
dc.subjectconformation
dc.subjectDNA replication
dc.subjectDNA supercoiling
dc.subjectfetus
dc.subjectgenetics
dc.subjecthuman
dc.subjectmagnetism
dc.subjectmetabolism
dc.subjectmolecular model
dc.subjectneoplasm
dc.subjectoptical tweezers
dc.subjectprocedures
dc.subjectDNA
dc.subjectDNA Replication
dc.subjectDNA, Single-Stranded
dc.subjectDNA, Superhelical
dc.subjectFetus
dc.subjectHMGA2 Protein
dc.subjectHumans
dc.subjectMagnetics
dc.subjectModels, Molecular
dc.subjectNeoplasms
dc.subjectNucleic Acid Conformation
dc.subjectOptical Tweezers
dc.subjectProtein Binding
dc.subjectRecombinant Proteins
dc.typeArticle
dc.contributor.departmentPHYSICS
dc.description.doi10.1038/s41598-017-09104-5
dc.description.sourcetitleScientific Reports
dc.description.volume7
dc.description.issue1
dc.description.page8440
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