Spatiotemporally controlled generation of NTPs for single-molecule studies of NTP-driven processes
https://doi.org/10.17044/SCILIFELAB.20107199
Data supporting the findings of the paper titled "Spatiotemporally controlled generation of NTPs for single-molecule studies" in Nature Chemical Biology which describes a method for controlling NTP-driven reactions in single-molecule experiments via the local generation of NTPs (LAGOON) that increases the measurement throughput and enables single-turnover observations.
The dataset contains single-molecule FRET data capturing T4 helicase DNA unwinding, nucleosome remodeling by Chd1 and the invasion of a nucleosome by the T7 RNA polymerase. Additionally, the dataset contains acoustic force spectroscopy data on E. coli RNA polymerase elongation.
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Opens in a new tabhttps://doi.org/10.17044/SCILIFELAB.20107199
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Creator/Principal investigator(s):
- Mikhail A. Khodorkovskiy
- Sebastian Deindl
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