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Combined versatile high-resolution optical tweezers and single-molecule fluorescence microscopy

机译:多功能高分辨率光学镊子和单分子荧光显微镜相结合

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摘要

Optical trapping and single-molecule fluorescence are two major single-molecule approaches. Their combination has begun to show greater capability to study more complex systems than either method alone, but met many fundamental and technical challenges. We built an instrument that combines base-pair resolution dual-trap optical tweezers with single-molecule fluorescence microscopy. The instrument has complementary design and functionalities compared with similar microscopes previously described. The optical tweezers can be operated in constant force mode for easy data interpretation or in variable force mode for maximum spatiotemporal resolution. The single-molecule fluorescence detection can be implemented in either wide-field or confocal imaging configuration. To demonstrate the capabilities of the new instrument, we imaged a single stretched λ DNA molecule and investigated the dynamics of a DNA hairpin molecule in the presence of fluorophore-labeled complementary oligonucleotide. We simultaneously observed changes in the fluorescence signal and pauses in fast extension hopping of the hairpin due to association and dissociation of individual oligonucleotides. The combined versatile microscopy allows for greater flexibility to study molecular machines or assemblies at a single-molecule level.
机译:光学捕获和单分子荧光是两种主要的单分子方法。他们的结合已开始显示出比单独使用任何一种方法研究更复杂系统的能力,但它们遇到了许多基本和技术挑战。我们构建了一种将碱基对分辨率双阱光镊与单分子荧光显微镜相结合的仪器。与先前描述的类似显微镜相比,该仪器具有互补的设计和功能。光学镊子可在恒力模式下操作,以便于数据解释,而在可变力模式下则可实现最大时空分辨率。单分子荧光检测可以在宽视野或共聚焦成像配置中实现。为了证明新仪器的功能,我们对单个拉伸的λDNA分子进行了成像,并研究了在荧光团标记的互补寡核苷酸存在下DNA发夹分子的动力学。我们同时观察到荧光信号的变化,并由于单个寡核苷酸的缔合和解离而在发夹的快速延伸跳跃中暂停。组合的多功能显微镜为在单分子水平上研究分子机器或组件提供了更大的灵活性。

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