Surface structure of Uukuniemi virus

Author:

von Bonsdorff C H,Pettersson R

Abstract

Uukuniemi virus, grown in chicken embryo fibroblasts, has been studied by electron microscopy using negative staining, thin sectioning, and freeze-etching techniques. The spherical virus particle measures about 95 nm in diameter. Its envelope consists of a 5-nm thick membrane covered by 8- to 10-nm long surface projections. These are composed of two polypeptides species of about the same size. Both of them can be removed by digestion with the proteolytic enzyme thermolysin except for a small fragment. The enzyme-treated particles are smooth surfaced and extremely deformable. The glycopolypeptides are clustered to form hollow cylindrical morphological units, 10 to 12 nm in diameter, with a 5-nm central cavity. Both negative staining and freeze-etching suggest that these units are penton-hexon clusters arranged in a T = 12, P = 3, icosahedral surface lattice. The membrane to which the surface subunits are attached is probably a lipid bilayer as evidenced by its double-track appearance in thin sections and the tendency of the freeze fracturing to occur within it. The strand-like nucleoprotein appears from thin-sectioning results to be to a large part located in a zone underneath the membrane.

Publisher

American Society for Microbiology

Subject

Virology,Insect Science,Immunology,Microbiology

Reference31 articles.

1. Sindbis virus glycoproteins form a regular icosahedral surface lattice;von Bonsdorff C.;J. Virol.,1975

2. The inner structure of Uukuniemi virus and two Bunyamwera supergroup arboviruses;von Bonsdorff C.;Virology,1969

3. Electron microscopy study on the development of Uukuniemi virus;von Bonsdorff C.;Acta Virol.,1970

4. Three-segment RNA genome of Lumbo virus (Bunyavirus);Bouloy M.;Intervirology,1974

5. Model for vesicular stomatitis virus;Cartwright B.;J. Virol.,1972

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