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光学捕获与单分子荧光联用

Combined optical trapping and single-molecule fluorescence.

作者信息

Lang Matthew J, Fordyce Polly M, Block Steven M

机构信息

Department of Biological Sciences, Stanford University, Stanford, CA 94305-5020, USA.

出版信息

J Biol. 2003;2(1):6. doi: 10.1186/1475-4924-2-6. Epub 2003 Feb 24.

Abstract

BACKGROUND

Two of the mainstay techniques in single-molecule research are optical trapping and single-molecule fluorescence. Previous attempts to combine these techniques in a single experiment - and on a single macromolecule of interest - have met with little success, because the light intensity within an optical trap is more than ten orders of magnitude greater than the light emitted by a single fluorophore. Instead, the two techniques have been employed sequentially, or spatially separated by distances of several micrometers within the sample, imposing experimental restrictions that limit the utility of the combined method. Here, we report the development of an instrument capable of true, simultaneous, spatially coincident optical trapping and single-molecule fluorescence.

RESULTS

We demonstrate the capability of the apparatus by studying force-induced strand separation of a rhodamine-labeled, 15 base-pair segment of double-stranded DNA, with force applied perpendicular to the axis of the DNA molecule. As expected, we observed abrupt mechanical transitions corresponding to the unzipping of DNA at a critical force. Transitions occurred concomitant with changes in the fluorescence of dyes attached at the duplex ends, which became unquenched upon strand separation.

CONCLUSIONS

Through careful optical design, the use of high-performance spectral notch filters, a judicious choice of fluorophores, and the rapid acquisition of data gained by computer-automating the experiment, it is possible to perform combined optical trapping and single-molecule fluorescence. This opens the door to many types of experiment that employ optical traps to supply controlled external loads while fluorescent molecules report concurrent information about macromolecular structure.

摘要

背景

单分子研究中的两项主要技术是光镊和单分子荧光技术。此前,在单个实验中,即在单个感兴趣的大分子上,将这两种技术结合起来的尝试收效甚微,因为光镊内的光强度比单个荧光团发出的光强度大十个数量级以上。相反,这两种技术是相继使用的,或者在样品内通过几微米的距离进行空间分离,这带来了实验限制,限制了这种组合方法的实用性。在此,我们报告了一种能够实现真正的、同时的、空间重合的光镊和单分子荧光的仪器的研发情况。

结果

我们通过研究一条罗丹明标记的、15个碱基对的双链DNA片段在垂直于DNA分子轴施加力时的力诱导链分离,展示了该仪器的能力。正如预期的那样,我们观察到在临界力下对应于DNA解链的突然机械转变。转变发生时,双链末端附着的染料的荧光也发生了变化,链分离时染料荧光不再猝灭。

结论

通过精心的光学设计、使用高性能光谱陷波滤波器、明智地选择荧光团以及通过计算机自动化实验快速获取数据,实现光镊和单分子荧光的结合是可能的。这为许多类型的实验打开了大门,这些实验利用光镊提供可控的外部负载,同时荧光分子报告有关大分子结构的同步信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cc2d/156597/9d08b4e3b40c/1475-4924-2-6-1.jpg

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