The extruded non-template strand determines the architecture of R-loops
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https://www.ncbi.nlm.nih.gov/geo/query/acc.cgi?acc=GSE129936
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We show that these R-loop objects impose specific physical constraints on the DNA, as revealed by the presence of stereotypical angles in the surrounding DNA. Biochemical probing and mutagenesis experiments revealed that the formation of R-loop objects at Airn is dictated by the extruded non-template strand, suggesting that R-loops possess intrinsic sequence-driven properties. Consistent with this, we show that R-loops formed at the fission yeast gene sum3 do not form detectable R-loop objects. Our results reveal that R-loops differ by their architectures and that the organization of the non-template strand is a fundamental characteristic of R-loops, which could explain that only a subset of R-loops is associated with replication-dependent DNA breaks. Characterization of R-loop at Airn using Atomic Force Microscopy (AFM) and Single Molecule R-loop Footprinting sequencing (SMRF-seq)
创建时间:
2019-07-23



