Fluorescent Single-Stranded DNA Binding Protein as a Probe for Sensitive, Real-Time Assays of Helicase Activity: Biophysical Journal

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Fluorescent Single-Stranded DNA Binding Protein as a Probe for Sensitive,  Real-Time Assays of Helicase Activity: Biophysical Journal
Nucleic Acid Fluorescent Probes for Biological Sensing - Xin Su, Xianjin Xiao, Chen Zhang, Meiping Zhao, 2012
Fluorescent Single-Stranded DNA Binding Protein as a Probe for Sensitive,  Real-Time Assays of Helicase Activity: Biophysical Journal
Deciphering the mechanism of processive ssDNA digestion by the Dna2-RPA ensemble
Fluorescent Single-Stranded DNA Binding Protein as a Probe for Sensitive,  Real-Time Assays of Helicase Activity: Biophysical Journal
DNA binding fluorescent proteins as single-molecule probes - Analyst (RSC Publishing) DOI:10.1039/D0AN00218F
Fluorescent Single-Stranded DNA Binding Protein as a Probe for Sensitive,  Real-Time Assays of Helicase Activity: Biophysical Journal
PDF) Fluorescent Single-Stranded DNA Binding Protein as a Probe for Sensitive, Real-Time Assays of Helicase Activity
Fluorescent Single-Stranded DNA Binding Protein as a Probe for Sensitive,  Real-Time Assays of Helicase Activity: Biophysical Journal
PDF] Fluorescence stopped-flow studies of single turnover kinetics of E.coli RecBCD helicase-catalyzed DNA unwinding.
Fluorescent Single-Stranded DNA Binding Protein as a Probe for Sensitive,  Real-Time Assays of Helicase Activity: Biophysical Journal
Nucleic Acid Fluorescent Probes for Biological Sensing - Xin Su, Xianjin Xiao, Chen Zhang, Meiping Zhao, 2012
Fluorescent Single-Stranded DNA Binding Protein as a Probe for Sensitive,  Real-Time Assays of Helicase Activity: Biophysical Journal
Frontiers Decoding the Structural Dynamics and Conformational Alternations of DNA Secondary Structures by Single-Molecule FRET Microspectroscopy
Fluorescent Single-Stranded DNA Binding Protein as a Probe for Sensitive,  Real-Time Assays of Helicase Activity: Biophysical Journal
Single-molecule visualization of RecQ helicase reveals DNA melting, nucleation, and assembly are required for processive DNA unwinding
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