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Enhanced electrostatic force microscopy reveals higher-order DNA looping mediated by the telomeric protein TRF2

机译:增强的静电力显微镜显示由端粒蛋白TRF2介导的高阶DNA环节

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Shelterin protein TRF2 modulates telomere structures by promoting dsDNA compaction and T-loop formation. Advancement of our understanding of the mechanism underlying TRF2-mediated DNA compaction requires additional information regarding DNA paths in TRF2-DNA complexes. To uncover the location of DNA inside protein-DNA complexes, we recently developed the Dual-Resonance-frequency-Enhanced Electrostatic force Microscopy (DREEM) imaging technique. DREEM imaging shows that in contrast to chromatin with DNA wrapping around histones, large TRF2-DNA complexes (with volumes larger than TRF2 tetramers) compact DNA inside TRF2 with portions of folded DNA appearing at the edge of these complexes. Supporting coarse-grained molecular dynamics simulations uncover the structural requirement and sequential steps during TRF2-mediated DNA compaction and result in folded DNA structures with protruding DNA loops as seen in DREEM imaging. Revealing DNA paths in TRF2 complexes provides new mechanistic insights into structure-function relationships underlying telomere maintenance pathways.
机译:避难蛋白TRF2通过促进DSDNA压实和T环形成来调节端粒局部。我们对潜在的TRF2介导的DNA压实机制的理解的进步需要关于TRF2-DNA复合物中的DNA路径的额外信息。为了揭示蛋白质-DNA复合物内DNA的位置,我们最近开发了双共振频率增强的静电力显微镜(DREEME)成像技术。 Reem映像表明,与染色质与组织蛋白包裹的染色质相反,大型TRF2-DNA复合物(具有大于TRF2四聚体的体积)TRF2内的紧凑型DNA,其中折叠的DNA部分出现在这些配合物的边缘。支撑粗粒化分子动力学模拟在TRF2介导的DNA压实期间揭示了结构要求和顺序步骤,导致DNA环绕折叠的DNA结构,如DREEM成像所示。揭示TRF2复合物中的DNA路径为角质化维护途径的结构功​​能关系提供了新的机制见解。

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