Rep-Mediated Nicking of the Adeno-Associated Virus Origin Requires Two Biochemical Activities, DNA Helicase Activity and Transesterification

Author:

Brister J. Rodney1,Muzyczka Nicholas1

Affiliation:

1. Department of Molecular Genetics and Microbiology and University of Florida Gene Therapy Center, College of Medicine, University of Florida, Gainesville, Florida 32610

Abstract

ABSTRACT The single-stranded adeno-associated virus (AAV) genome is flanked by terminal hairpinned origins of DNA replication (terminal repeats [TRs]) that are nicked at the terminal resolution site ( trs ) by the AAV Rep protein in an ATP-dependent, site-specific manner. Here we determine the minimal trs sequence necessary for Rep cleavage, 3′-CCGGT/TG-5′, and show that this 7-base core sequence is required only on the nicked strand. We also identify a potential stem-loop structure at the trs . Interestingly, Rep nicking on a TR substrate that fixes this trs stem-loop in the extruded form no longer requires ATP. This suggests that ATP-dependent Rep helicase activity is necessary to unwind the duplex trs and extrude the stem-loop structure, prior to the ATP-independent Rep transesterification reaction. The extrusion of origin stem-loop structures prior to nicking appears to be a general mechanism shared by plant and animal viruses and bacterial plasmids. In the case of AAV, this mechanism of TR nicking would provide a possible regulatory function.

Publisher

American Society for Microbiology

Subject

Virology,Insect Science,Immunology,Microbiology

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