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Multispot single-molecule FRET: High-throughput analysis of freely diffusing molecules

机译:多点单分子FRET:自由扩散分子的高通量分析

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摘要

We describe an 8-spot confocal setup for high-throughput smFRET assays and illustrate its performance with two characteristic experiments. First, measurements on a series of freely diffusing doubly-labeled dsDNA samples allow us to demonstrate that data acquired in multiple spots in parallel can be properly corrected and result in measured sample characteristics consistent with those obtained with a standard single-spot setup. We then take advantage of the higher throughput provided by parallel acquisition to address an outstanding question about the kinetics of the initial steps of bacterial RNA transcription. Our real-time kinetic analysis of promoter escape by bacterial RNA polymerase confirms results obtained by a more indirect route, shedding additional light on the initial steps of transcription. Finally, we discuss the advantages of our multispot setup, while pointing potential limitations of the current single laser excitation design, as well as analysis challenges and their solutions.
机译:我们描述了一种用于高通量smFRET分析的8点共聚焦装置,并通过两个特征实验说明了其性能。首先,对一系列自由扩散的双标记dsDNA样品进行的测量使我们证明,可以并行校正在多个斑点中并行采集的数据,并且所测得的样品特征与标准单点设置所获得的特征一致。然后,我们利用并行采集提供的更高的吞吐量来解决有关细菌RNA转录初始步骤动力学的突出问题。我们通过细菌RNA聚合酶对启动子逃逸进行的实时动力学分析证实了通过更间接的途径获得的结果,从而在转录的初始步骤上减少了额外的负担。最后,我们讨论了多点设置的优点,同时指出了当前单激光激发设计的潜在局限性,以及分析挑战及其解决方案。

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