Title of article
Visualizing the Structural Changes of Bacteriophage Epsilon15 and Its Salmonella Host during Infection
Author/Authors
Juan T. Chang، نويسنده , , Matthew Dougherty and Michael F. Schmid، نويسنده , , Cameron Haase-Pettingell، نويسنده , , Peter R. Weigele، نويسنده , , Jonathan A. King، نويسنده , , Wah Chiu، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2010
Pages
10
From page
731
To page
740
Abstract
The efficient mechanism by which double-stranded DNA bacteriophages deliver their chromosome across the outer membrane, cell wall, and inner membrane of Gram-negative bacteria remains obscure. Advances in single-particle electron cryomicroscopy have recently revealed details of the organization of the DNA injection apparatus within the mature virion for various bacteriophages, including epsilon15 (ɛ15) and P-SSP7. We have used electron cryotomography and three-dimensional subvolume averaging to capture snapshots of ɛ15 infecting its host Salmonella anatum. These structures suggest the following stages of infection. In the first stage, the tailspikes of ɛ15 attach to the surface of the host cell. Next, ɛ15ʹs tail hub attaches to a putative cell receptor and establishes a tunnel through which the injection core proteins behind the portal exit the virion. A tube spanning the periplasmic space is formed for viral DNA passage, presumably from the rearrangement of core proteins or from cellular components. This tube would direct the DNA into the cytoplasm and protect it from periplasmic nucleases. Once the DNA has been injected into the cell, the tube and portal seals, and the empty bacteriophage remains at the cell surface.
Keywords
Virus , Infection , Salmonella , cryotomography , Electron
Journal title
Journal of Molecular Biology
Serial Year
2010
Journal title
Journal of Molecular Biology
Record number
1252692
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