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J. Biol. Chem., Vol. 276, Issue 20, 17610-17619, May 18, 2001
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and
From the Department of Microbiology, University of Connecticut
Health Center, Farmington, Connecticut 06030
Herpes simplex virus type 1 encodes a heterotrimeric helicase-primase complex composed of the
products of the UL5, UL52, and UL8
genes. The UL5 protein contains seven motifs found in all members of helicase Superfamily 1 (SF1), and the UL52 protein contains
several conserved motifs found in primases; however, the
contributions of each subunit to the biochemical activities of the
subcomplex are not clear. In this work, the DNA binding properties of
wild type and mutant subcomplexes were examined using single-stranded,
duplex, and forked substrates. A gel mobility shift assay indicated
that the UL5-UL52 subcomplex binds more efficiently to the
forked substrate than to either single strand or duplex DNA. Although
nucleotides are not absolutely required for DNA binding, ADP stimulated
the binding of UL5-UL52 to single strand DNA whereas ATP, ADP, and
adenosine 5'-O-(thiotriphosphate) stimulated the binding to
a forked substrate. We have previously shown that both subunits contact
single-stranded DNA in a photocross-linking assay (Biswas, N., and
Weller, S. K. (1999) J. Biol. Chem. 274, 8068-8076). In this study, photocross-linking assays with forked substrates indicate that the UL5 and UL52 subunits contact the forked
substrates at different positions, UL52 at the single-stranded DNA tail and UL5 near the junction between single-stranded and double-stranded DNA. Neither subunit was able to cross-link a forked
substrate when 5-iododeoxyuridine was located within the duplex
portion. Photocross-linking experiments with subcomplexes containing
mutant versions of UL5 and wild type UL52 indicated that the integrity
of the ATP binding region is important for DNA binding of both
subunits. These results support our previous proposal that UL5 and UL52
exhibit a complex interdependence for DNA binding (Biswas, N., and
Weller, S. K. (1999) J. Biol. Chem. 274, 8068-8076) and indicate that the UL52 subunit may play a more active
role in helicase activity than had previously been thought.
Present address: Dept. of Biology, University of California, 9500 Gilman Dr., San Diego, CA 92093-0366.
§
To whom correspondence should be addressed. Tel.: 860-679-2310;
Fax: 860-679-1239; E-mail: weller@nso2.uchc.edu.
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