Ontology highlight
ABSTRACT:
SUBMITTER: Hellenkamp B
PROVIDER: S-EPMC6121742 | biostudies-literature | 2018 Sep
REPOSITORIES: biostudies-literature
Hellenkamp Björn B Schmid Sonja S Doroshenko Olga O Opanasyuk Oleg O Kühnemuth Ralf R Rezaei Adariani Soheila S Ambrose Benjamin B Aznauryan Mikayel M Barth Anders A Birkedal Victoria V Bowen Mark E ME Chen Hongtao H Cordes Thorben T Eilert Tobias T Fijen Carel C Gebhardt Christian C Götz Markus M Gouridis Giorgos G Gratton Enrico E Ha Taekjip T Hao Pengyu P Hanke Christian A CA Hartmann Andreas A Hendrix Jelle J Hildebrandt Lasse L LL Hirschfeld Verena V Hohlbein Johannes J Hua Boyang B Hübner Christian G CG Kallis Eleni E Kapanidis Achillefs N AN Kim Jae-Yeol JY Krainer Georg G Lamb Don C DC Lee Nam Ki NK Lemke Edward A EA Levesque Brié B Levitus Marcia M McCann James J JJ Naredi-Rainer Nikolaus N Nettels Daniel D Ngo Thuy T Qiu Ruoyi R Robb Nicole C NC Röcker Carlheinz C Sanabria Hugo H Schlierf Michael M Schröder Tim T Schuler Benjamin B Seidel Henning H Streit Lisa L Thurn Johann J Tinnefeld Philip P Tyagi Swati S Vandenberk Niels N Vera Andrés Manuel AM Weninger Keith R KR Wünsch Bettina B Yanez-Orozco Inna S IS Michaelis Jens J Seidel Claus A M CAM Craggs Timothy D TD Hugel Thorsten T
Nature methods 20180831 9
Single-molecule Förster resonance energy transfer (smFRET) is increasingly being used to determine distances, structures, and dynamics of biomolecules in vitro and in vivo. However, generalized protocols and FRET standards to ensure the reproducibility and accuracy of measurements of FRET efficiencies are currently lacking. Here we report the results of a comparative blind study in which 20 labs determined the FRET efficiencies (E) of several dye-labeled DNA duplexes. Using a unified, straightfo ...[more]