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S Higley

Publications and source records attributed to S Higley.

3 recordsLinked to original sources

The vaccinia virus F17R protein interacts with actin.

We have examined the possible role of the F17R protein in vaccinia virus-induced rearrangements of the host actin cytoskeleton. F17R is localized to vaccinia-induced actin tails late during infection. The recombinant vaccinia strain vRO11k is able to induce actin tails that are indistinguishable from controls in the absence of F17R expression. The association of vaccinia and myxoma virus F17R with the actin cytoskeleton in the absence of additional viral factors suggests a basic region in the N-terminal half of the protein is important for this interaction. A peptide corresponding to this region efficiently bundles actin filaments in vitro, confirming that the protein interacts directly with actin. Our results show F17R is not required for actin tail formation and highlight the difficulty in discriminating functional actin-binding proteins from those that associate by virtue of their basic nature.

Actins↗

Actin and cell pathogenesis.

The bacterial pathogens Listeria monocytogenes and Shigella flexneri recruit host factors that enable them to use actin polymerization as the driving force to facilitate their spread into neighbouring cells. It is now becoming clear that other pathogens, including viruses, have developed a number of different strategies to use the actin cytoskeleton of the host to their advantage during the infection process.

Actins↗

Characterization of the vaccinia virus F8L protein.

Vaccinia virus infection dramatically affects the host actin cytoskeleton by inducing disassembly of actin stress fibres and formation of actin tails which propel the virus intra- and intercellularly. The viral factors responsible for these actin rearrangements remain unknown. Sequence analysis reveals significant homology between the vaccinia F8L ORF and the proline repeats of iActA, the protein which initiates actin tail assembly and motility in the bacterial pathogen Listeria ivanovii. We characterized the F8L gene product to examine its possible role in vaccinia rearrangements of the host actin cytoskeleton. F8L is a approximately 8 kDa protein expressed early during infection and is found throughout the cytoplasm, with no discernible association with viral or cellular structures. Furthermore, the F8L deletion strain, WR deltaF8L, forms particles and actin tails indistinguishable from WR. Our observations demonstrate that F8L is not required for vaccinia virus morphogenesis or the actin rearrangements observed during infection.

Actin Cytoskeleton↗