The UL8 subunit of the helicase-primase complex of herpes simplex virus promotes DNA annealing and has a high affinity for replication forks

J Biol Chem. 2017 Sep 22;292(38):15611-15621. doi: 10.1074/jbc.M117.799064. Epub 2017 Jul 25.

Abstract

During lytic infection, herpes simplex virus (HSV) DNA is replicated by a mechanism involving DNA recombination. For instance, replication of the HSV-1 genome produces X- and Y-branched structures, reminiscent of recombination intermediates. HSV-1's replication machinery includes a trimeric helicase-primase composed of helicase (UL5) and primase (UL52) subunits and a third subunit, UL8. UL8 has been reported to stimulate the helicase and primase activities of the complex in the presence of ICP8, an HSV-1 protein that functions as an annealase, a protein that binds complementary single-stranded DNA (ssDNA) and facilitates its annealing to duplex DNA. UL8 also influences the intracellular localization of the UL5/UL52 subunits, but UL8's catalytic activities are not known. In this study we used a combination of biochemical techniques and transmission electron microscopy. First, we report that UL8 alone forms protein filaments in solution. Moreover, we also found that UL8 binds to ssDNAs >50-nucletides long and promotes the annealing of complementary ssDNA to generate highly branched duplex DNA structures. Finally, UL8 has a very high affinity for replication fork structures containing a gap in the lagging strand as short as 15 nucleotides, suggesting that UL8 may aid in directing or loading the trimeric complex onto a replication fork. The properties of UL8 uncovered here suggest that UL8 may be involved in the generation of the X- and Y-branched structures that are the hallmarks of HSV replication.

Keywords: DNA annealing; DNA binding protein; DNA replication; UL8; electron microscopy (EM); herpesvirus; protein structure; replication fork.

Publication types

  • Research Support, N.I.H., Extramural

MeSH terms

  • Base Sequence
  • DNA Helicases / metabolism*
  • DNA Primase / metabolism*
  • DNA Replication*
  • DNA, Single-Stranded / biosynthesis
  • DNA, Single-Stranded / chemistry
  • DNA, Single-Stranded / metabolism
  • Herpesvirus 1, Human / enzymology*
  • Herpesvirus 1, Human / genetics*
  • Herpesvirus 1, Human / ultrastructure
  • Molecular Weight
  • Viral Proteins / metabolism*

Substances

  • DNA, Single-Stranded
  • Viral Proteins
  • DNA Primase
  • helicase-primase, Human herpesvirus 1
  • DNA Helicases