Optical tweezers-based DNA stretching often relies on tethering a single end-activated DNA molecule between optically manipulated end-binding beads. Measurement success can depend on DNA concentration. At lower DNA concentrations tethering is less common, and many trials may be required to observe a single-molecule stretch. At higher DNA concentrations tethering is more common; however, the resulting force-extensions observed are more complex and may vary from measurement to measurement. Typically these more complex results are attributed to the formation of multiple tethers between the beads; however, to date there does not appear to have been a critical examination of this hypothesis or the potential usefulness of such data. Here we examine stretches at a higher DNA concentration and use analysis and simulation to show how the more complex force-extensions observed can be understood in terms of multiple DNA attachments.
Modeling multiple duplex DNA attachments in a force-extension experiment.
在力-延伸实验中模拟多个双链DNA连接
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作者:Raudsepp Allan, Williams Martin A K, Jameson Geoffrey B
| 期刊: | Biophysical Reports | 影响因子: | 2.700 |
| 时间: | 2022 | 起止号: | 2022 Feb 2; 2(1):100045 |
| doi: | 10.1016/j.bpr.2022.100045 | ||
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