Literature DB >> 12743290

Structure of intracellular mature vaccinia virus visualized by in situ atomic force microscopy.

A J Malkin1, A McPherson, P D Gershon.   

Abstract

Vaccinia virus, the basis of the smallpox vaccine, is one of the largest viruses to replicate in humans. We have used in situ atomic force microscopy (AFM) to directly visualize fully hydrated, intact intracellular mature vaccinia virus (IMV) virions and chemical and enzymatic treatment products thereof. The latter included virion cores, core-enveloping coats, and core substructures. The isolated coats appeared to be composed of a highly cross-linked protein array. AFM imaging of core substructures indicated association of the linear viral DNA genome with a segmented protein sheath forming an extended approximately 16-nm-diameter filament with helical surface topography; enclosure of this filament within a 30- to 40-nm-diameter tubule which also shows helical topography; and enclosure of the folded, condensed 30- to 40-nm-diameter tubule within the core by a wall covered with peg-like projections. Proteins observed attached to the 30- to 40-nm-diameter tubules may mediate folding and/or compaction of the tubules and/or represent vestiges of the core wall and/or pegs. An accessory "satellite domain" was observed protruding from the intact core. This corresponded in size to isolated 70- to 100-nm-diameter particles that were imaged independently and might represent detached accessory domains. AFM imaging of intact virions indicated that IMV underwent a reversible shrinkage upon dehydration (as much as 2.2- to 2.5-fold in the height dimension), accompanied by topological and topographical changes, including protrusion of the satellite domain. As shown here, the chemical and enzymatic dissection of large, asymmetrical virus particles in combination with in situ AFM provides an informative complement to other structure determination techniques.

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Year:  2003        PMID: 12743290      PMCID: PMC155008          DOI: 10.1128/jvi.77.11.6332-6340.2003

Source DB:  PubMed          Journal:  J Virol        ISSN: 0022-538X            Impact factor:   5.103


  37 in total

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Authors:  J NAGINGTON; R W HORNE
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Authors:  H G Hansma; L Pietrasanta
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4.  Intramolecular synapsis of duplex DNA by vaccinia topoisomerase.

Authors:  S Shuman; D G Bear; J Sekiguchi
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5.  Structural features of vaccinia virus revealed by negative staining, sectioning, and freeze-etching.

Authors:  E L Medzon; H Bauer
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6.  Controlled degradation of vaccinia virions in vitro: an electron microscopic study.

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7.  Structure and assembly of intracellular mature vaccinia virus: isolated-particle analysis.

Authors:  G Griffiths; R Wepf; T Wendt; J K Locker; M Cyrklaff; N Roos
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8.  Location of DNA-binding proteins and disulfide-linked proteins in vaccinia virus structural elements.

Authors:  Y Ichihashi; M Oie; T Tsuruhara
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Authors:  S Cudmore; R Blasco; R Vincentelli; M Esteban; B Sodeik; G Griffiths; J Krijnse Locker
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10.  An unconventional role for cytoplasmic disulfide bonds in vaccinia virus proteins.

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