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Interaction of Oxazole Yellow Dyes with DNA Studied with Hybrid Optical Tweezers and Fluorescence Microscopy

机译:杂色光镊和荧光显微镜研究恶唑黄染料与DNA的相互作用

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摘要

We have integrated single molecule fluorescence microscopy imaging into an optical tweezers set-up and studied the force extension behavior of individual DNA molecules in the presence of various YOYO-1 and YO-PRO-1 concentrations. The fluorescence modality was used to record fluorescent images during the stretching and relaxation cycle. Force extension curves recorded in the presence of either dye did not show the overstretching transition that is characteristic for bare DNA. Using the modified wormlike chain model to curve-fit the force extension data revealed a contour length increase of 6% and 30%, respectively, in the presence of YO-PRO-1 and YOYO-1 at 100 nM. The fluorescence images recorded simultaneously showed that the number of bound dye molecules increased as the DNA molecule was stretched and decreased again as the force on the complex was lowered. The binding constants and binding site sizes for YO-PRO-1 and YOYO-1 were determined as a function of the force. The rate of YO-PRO-1 binding and unbinding was found to be 2 orders of magnitude larger than that for YOYO-1. A kinetic model is proposed to explain this observation.
机译:我们已经将单分子荧光显微镜成像集成到光镊设置中,并研究了在各种YOYO-1和YO-PRO-1浓度下单个DNA分子的力延伸行为。荧光模态用于在拉伸和松弛周期中记录荧光图像。在两种染料存在下记录的力延伸曲线均未显示出裸DNA所特有的过度拉伸过渡。使用修改的蠕虫状链模型对力延伸数据进行曲线拟合,发现在存在100 nM的YO-PRO-1和YOYO-1时,轮廓长度分别增加了6%和30%。同时记录的荧光图像显示,随着DNA分子的拉伸,结合染料分子的数量增加,而对复合物的作用力降低,结合的染料分子的数量又减少。确定YO-PRO-1和YOYO-1的结合常数和结合位点大小作为力的函数。发现YO-PRO-1的结合和解离速率比YOYO-1大2个数量级。提出了动力学模型来解释该观察。

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