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The impact of DNA intercalators on DNA and DNA-processing enzymes elucidated through force-dependent binding kinetics

机译:DNA嵌入剂对通过力依赖性结合动力学阐明的DNA和DNA加工酶的影响

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摘要

DNA intercalators are widely used as fluorescent probes to visualize DNA and DNA transactions in vivo and in vitro. It is well known that they perturb DNA structure and stability, which can in turn influence DNA-processing by proteins. Here we elucidate this perturbation by combining single-dye fluorescence microscopy with force spectroscopy and measuring the kinetics of DNA intercalation by the mono- and bis-intercalating cyanine dyes SYTOX Orange, SYTOX Green, SYBR Gold, YO-PRO-1, YOYO-1 and POPO-3. We show that their DNA-binding affinity is mainly governed by a strongly tension-dependent dissociation rate. These rates can be tuned over a range of seven orders of magnitude by changing DNA tension, intercalating species and ionic strength. We show that optimizing these rates minimizes the impact of intercalators on strand separation and enzymatic activity. These new insights provide handles for the improved use of intercalators as DNA probes with minimal perturbation and maximal efficacy.
机译:DNA嵌入剂被广泛用作荧光探针,以可视化体内和体外的DNA和DNA交易。众所周知,它们会扰乱DNA的结构和稳定性,进而影响蛋白质对DNA的加工。在这里,我们通过将单染料荧光显微镜与力谱法相结合,并通过单和双嵌入花青染料SYTOX橙色,SYTOX绿色,SYBR金,YO-PRO-1,YOYO-1来测量DNA嵌入的动力学,来阐明这种干扰。和POPO-3。我们表明,它们的DNA结合亲和力主要由强烈的张力依赖性解离速率控制。通过改变DNA张力,插入种类和离子强度,可以在七个数量级的范围内调整这些速率。我们表明优化这些速率可以最小化嵌入剂对链分离和酶活性的影响。这些新见解提供了以最小的扰动和最大的功效来改进嵌入剂作为DNA探针的使用方法。

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