Real-time 3D single molecule tracking

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作者
Shangguo Hou
Jack Exell
Kevin Welsher
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[1] Duke University,Department of Chemistry
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Nature Communications | / 11卷
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摘要
To date, single molecule studies have been reliant on tethering or confinement to achieve long duration and high temporal resolution measurements. Here, we present a 3D single-molecule active real-time tracking method (3D-SMART) which is capable of locking on to single fluorophores in solution for minutes at a time with photon limited temporal resolution. As a demonstration, 3D-SMART is applied to actively track single Atto 647 N fluorophores in 90% glycerol solution with an average duration of ~16 s at count rates of ~10 kHz. Active feedback tracking is further applied to single proteins and nucleic acids, directly measuring the diffusion of various lengths (99 to 1385 bp) of single DNA molecules at rates up to 10 µm2/s. In addition, 3D-SMART is able to quantify the occupancy of single Spinach2 RNA aptamers and capture active transcription on single freely diffusing DNA. 3D-SMART represents a critical step towards the untethering of single molecule spectroscopy.
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  • [31] Southall J(2018)A Protocol for real-time 3D single particle tracking JoVE 131 2146-564
  • [32] Cogdell RJ(2008)High-speed varifocal imaging with a tunable acoustic gradient index of refraction lens Opt. Lett. 33 22585-695
  • [33] Moerner WE(2012)Optimal tracking of a Brownian particle Opt. Express 20 387-278
  • [34] Schlau-Cohen GS(2002)Single molecule photobleaching: increasing photon yield and survival time through suppression of two-step photolysis Chem. Phys. Lett. 365 481-415
  • [35] Goldsmith RH(2009)Triplet-relaxation microscopy with bunched pulsed excitation Photochem. Photobiol. Sci. 8 81-497
  • [36] Moerner WE(2006)Major signal increase in fluorescence microscopy through dark-state relaxation Nat. Methods 4 689-173
  • [37] Wang Q(2016)Excitation light dose engineering to reduce photo-bleaching and photo-toxicity Sci. Rep. 6 827-646
  • [38] Moerner WE(2006)MRT letter: High speed scanning has the potential to increase fluorescence yield and to reduce photobleaching Microsc. Res. Tech. 69 11440-1244
  • [39] Juette MF(2015)Ultrafast, temporally stochastic STED nanoscopy of millisecond dynamics Nat. Methods 12 559-1852
  • [40] Bewersdorf J(2006)Macromolecular-scale resolution in biological fluorescence microscopy Proc. Natl Acad. Sci. USA 103 691-1450