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Methods in Molecular Biology (Clifton, N.J.)|August 3, 2011
Fluorescent nucleoside triphosphates for single-molecule enzymologyChristopher P Toseland, Martin R Webb
The Journal of Biological Chemistry|July 11, 2013
ATPase mechanism of the 5'-3' DNA helicase, RecD2: evidence for a pre-hydrolysis conformation changeChristopher P Toseland, Martin R Webb
Methods (San Diego, Calif.)|February 20, 2010
Fluorescence tools to measure helicase activity in real timeChristopher P Toseland, Martin R Webb
Plos One|June 16, 2012
ATPase cycle and DNA unwinding kinetics of RecG helicaseChristopher P Toseland, Ben Powell, Martin R Webb
Journal of Molecular Biology|August 4, 2009
The ATPase cycle of PcrA helicase and its coupling to translocation on DNAChristopher P Toseland, Maria M Martinez-Senac, Andrew F Slatter, et al.
Methods in Molecular Biology (Clifton, N.J.)|August 3, 2011
A single-molecule approach to visualize the unwinding activity of DNA helicasesNatalia Fili, Christopher P Toseland, Mark S Dillingham, et al.
Experientia Supplementum (2012)|August 7, 2014
Fluorescence to study the ATPase mechanism of motor proteinsChristopher P Toseland
Journal of Chemical Biology|January 17, 2014
Fluorescent labeling and modification of proteinsChristopher P Toseland
Nucleic Acids Research|March 29, 2013
Monomeric PcrA helicase processively unwinds plasmid lengths of DNA in the presence of the initiator protein RepDLiisa T Chisty, Christopher P Toseland, Natalia Fili, et al.
International Journal of Molecular Sciences|December 22, 2019
Unconventional Myosins: How Regulation Meets FunctionNatalia Fili, Christopher P Toseland
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