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

Por um escritor misterioso
Last updated 31 janeiro 2025
Fluorescent Single-Stranded DNA Binding Protein as a Probe for Sensitive,  Real-Time Assays of Helicase Activity: Biophysical Journal
Fluorescent Single-Stranded DNA Binding Protein as a Probe for Sensitive,  Real-Time Assays of Helicase Activity: Biophysical Journal
Förster resonance energy transfer and protein-induced fluorescence enhancement as synergetic multi-scale molecular rulers
Fluorescent Single-Stranded DNA Binding Protein as a Probe for Sensitive,  Real-Time Assays of Helicase Activity: Biophysical Journal
Structures of RecBCD in complex with phage-encoded inhibitor proteins reveal distinctive strategies for evasion of a bacterial immunity hub
Fluorescent Single-Stranded DNA Binding Protein as a Probe for Sensitive,  Real-Time Assays of Helicase Activity: Biophysical Journal
Fluorescent Probes of DNA Repair
Fluorescent Single-Stranded DNA Binding Protein as a Probe for Sensitive,  Real-Time Assays of Helicase Activity: Biophysical Journal
DNA replication machinery: Insights from in vitro single-molecule approaches - Computational and Structural Biotechnology Journal
Fluorescent Single-Stranded DNA Binding Protein as a Probe for Sensitive,  Real-Time Assays of Helicase Activity: Biophysical Journal
Direct imaging of single UvrD helicase dynamics on long single-stranded DNA
Fluorescent Single-Stranded DNA Binding Protein as a Probe for Sensitive,  Real-Time Assays of Helicase Activity: Biophysical Journal
Helicases SpringerLink
Fluorescent Single-Stranded DNA Binding Protein as a Probe for Sensitive,  Real-Time Assays of Helicase Activity: Biophysical Journal
Molecular Microbiology, Microbiology Journal
Fluorescent Single-Stranded DNA Binding Protein as a Probe for Sensitive,  Real-Time Assays of Helicase Activity: Biophysical Journal
PDF) Assaying the Activity of Helicases: An Overview
Fluorescent Single-Stranded DNA Binding Protein as a Probe for Sensitive,  Real-Time Assays of Helicase Activity: Biophysical Journal
T4 32 protein binds with higher affinity to DNA forks or flaps with a 5
Fluorescent Single-Stranded DNA Binding Protein as a Probe for Sensitive,  Real-Time Assays of Helicase Activity: Biophysical Journal
PDF] Visualizing helicases unwinding DNA at the single molecule level

© 2014-2025 phtarkwa.com. All rights reserved.