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Dissecting elastic heterogeneity along DNA molecules coated partly with Rad51 using concurrent fluorescence microscopy and optical tweezers.

机译:使用并发荧光显微镜和光学镊子解剖沿部分涂有Rad51的DNA分子的弹性异质性。

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摘要

Nucleoprotein filament formation by recombinases is central to homologous recombination. To follow this process, we used fluorescent human Rad51 recombinase to visualize the interactions with double-stranded DNA (dsDNA). Fluorescence imaging revealed that Rad51 filament formation on dsDNA initiates from multiple nucleation points, resulting in Rad51-dsDNA nucleoprotein filaments interspersed with regions of bare DNA. The elastic properties of such heterogeneously coated DNA molecules were assessed by combining force-extension measurements using optical traps with fluorescence microscopy. This combination of single-molecule techniques allows discrimination of segments within an individual DNA molecule and determination of their elastic properties. The nonfluorescent zones of DNA-Rad51 constructs showed the well-known (over)stretching behavior of bare DNA. In contrast, the fluorescent, Rad51-coated zones did not overstretch and Rad51 remained stably bound in a structure that was approximately 50% longer than bare DNA. These results illustrate the power of adding sensitive fluorescence imaging to optical tweezers instrumentation.
机译:重组酶形成的核蛋白细丝对于同源重组至关重要。为了遵循此过程,我们使用了荧光人Rad51重组酶来可视化与双链DNA(dsDNA)的相互作用。荧光成像显示,dsDNA上的Rad51细丝形成是从多个成核点开始的,导致Rad51-dsDNA核蛋白细丝散布在裸露的DNA区域。通过使用光阱与荧光显微镜相结合的力-延伸测量来评估这种异质包被的DNA分子的弹性特性。单分子技术的这种组合可以区分单个DNA分子内的片段并确定其弹性。 DNA-Rad51构建体的非荧光区显示了裸露DNA的众所周知(过度)拉伸行为。相反,荧光的Rad51涂层区域没有过度拉伸,Rad51稳定地结合在比裸DNA长约50%的结构中。这些结果说明了在光镊仪器中添加灵敏的荧光成像的能力。

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