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1. Chapter One Direct Fluorescent Imaging of Translocation and Unwinding by Individual DNA Helicases

2. Cellularly active N-hydroxyurea FEN1 inhibitors block substrate entry to the active site

3. Direct Fluorescent Imaging of Translocation and Unwinding by Individual DNA Helicases.

4. Regional conformational flexibility couples substrate specificity and scissile phosphate diester selectivity in human flap endonuclease 1.

5. Cellularly active N-hydroxyurea FEN1 inhibitors block substrate entry to the active site.

6. DNA and Protein Requirements for Substrate Conformational Changes Necessary for Human Flap Endonuclease-1-catalyzed Reaction.

7. Direct Fluorescent Imaging of Translocation and Unwinding by Individual DNA Helicases.

8. Proline scanning mutagenesis reveals a role for the flap endonuclease-1 helical cap in substrate unpairing.

9. Observation of unpaired substrate DNA in the flap endonuclease-1 active site.

10. Flap endonucleases pass 5'-flaps through a flexible arch using a disorder-thread-order mechanism to confer specificity for free 5'-ends.

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