Program in Molecular Biology, Instituto Potosino de Investigación Científica y Tecnológica, San Luis Potosí, Mexico.
PLoS One. 2013;8(2):e57383. doi: 10.1371/journal.pone.0057383. Epub 2013 Feb 25.
We report the construction and testing of a simple and versatile optical trapping apparatus, suitable for visualizing individual microtubules (∼25 nm in diameter) and performing single-molecule studies, using a minimal set of components. This design is based on a conventional, inverted microscope, operating under plain bright field illumination. A single laser beam enables standard optical trapping and the measurement of molecular displacements and forces, whereas digital image processing affords real-time sample visualization with reduced noise and enhanced contrast. We have tested our trapping and imaging instrument by measuring the persistence length of individual double-stranded DNA molecules, and by following the stepping of single kinesin motor proteins along clearly imaged microtubules. The approach presented here provides a straightforward alternative for studies of biomaterials and individual biomolecules.
我们报告了一种简单而通用的光学捕获装置的构建和测试,该装置使用最少的组件适用于可视化单个微管(直径约 25nm)并进行单分子研究。该设计基于传统的倒置显微镜,在明场照明下运行。单个激光束可实现标准光学捕获和分子位移及力的测量,而数字图像处理则可实现实时样品可视化,同时降低噪声并增强对比度。我们通过测量单个双链 DNA 分子的持久长度,并通过跟踪单个驱动蛋白沿着清晰成像的微管的步进,测试了我们的捕获和成像仪器。本文提出的方法为生物材料和单个生物分子的研究提供了一种直接的替代方法。