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Nature Plants|June 5, 2026
An active Helitron transposon family in wheatHaoran Peng, Lijing Tang, Nataliya Hrunyk, et al.Critical Reviews in Biochemistry and Molecular Biology|January 14, 2010
Integrating prokaryotes and eukaryotes: DNA transposases in light of structureAlison Burgess Hickman, Michael Chandler, Fred DydaQuarterly Reviews of Biophysics|December 11, 2012
The emerging diversity of transpososome architecturesFred Dyda, Michael Chandler, Alison Burgess HickmanProceedings of the National Academy of Sciences of the United States of America|February 13, 2008
Amyloid of Rnq1p, the basis of the [PIN+] prion, has a parallel in-register beta-sheet structureReed B Wickner, Fred Dyda, Robert TyckoScience (New York, N.Y.)|June 6, 2020
Comment on "RNA-guided DNA insertion with CRISPR-associated transposases"Phoebe A Rice, Nancy L Craig, Fred DydaCell|July 19, 2014
Structural basis of hAT transposon end recognition by Hermes, an octameric DNA transposase from Musca domesticaAlison B Hickman, Hosam E Ewis, Xianghong Li, et al.Nature Communications|January 8, 2025
Activity of the mammalian DNA transposon piggyBat from Myotis lucifugus is restricted by its own transposon endsAlison B Hickman, Laurie Lannes, Christopher M Furman, et al.Structural Dynamics (Melville, N.Y.)|April 10, 2024
Watching a signaling protein function: What has been learned over four decades of time-resolved studies of photoactive yellow proteinFriedrich Schotte, Hyun Sun Cho, Fred Dyda, et al.Nature Structural Biology|October 16, 2002
Core mutations switch monomeric protein GB1 into an intertwined tetramerM Kirsten Frank, Fred Dyda, Anatoliy Dobrodumov, et al.Nucleic Acids Research|February 1, 2018
Sequence-specific DNA binding activity of the cross-brace zinc finger motif of the piggyBac transposaseNelly Morellet, Xianghong Li, Silke A Wieninger, et al.Pageof 8