Structures of T7 bacteriophage portal and tail suggest a viral DNA retention and ejection mechanism

Double-stranded DNA bacteriophages package their genome at high pressure inside a procapsid through the portal, an oligomeric ring protein located at a unique capsid vertex. Once the DNA has been packaged, the tail components assemble on the portal to render the mature infective virion. The tail tig...

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Veröffentlicht in:Nature communications 2019-08, Vol.10 (1), p.3746-11, Article 3746
Hauptverfasser: Cuervo, Ana, Fàbrega-Ferrer, Montserrat, Machón, Cristina, Conesa, José Javier, Fernández, Francisco J., Pérez-Luque, Rosa, Pérez-Ruiz, Mar, Pous, Joan, Vega, M. Cristina, Carrascosa, José L., Coll, Miquel
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Sprache:eng
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Zusammenfassung:Double-stranded DNA bacteriophages package their genome at high pressure inside a procapsid through the portal, an oligomeric ring protein located at a unique capsid vertex. Once the DNA has been packaged, the tail components assemble on the portal to render the mature infective virion. The tail tightly seals the ejection conduit until infection, when its interaction with the host membrane triggers the opening of the channel and the viral genome is delivered to the host cell. Using high-resolution cryo-electron microscopy and X-ray crystallography, here we describe various structures of the T7 bacteriophage portal and fiber-less tail complex, which suggest a possible mechanism for DNA retention and ejection: a portal closed conformation temporarily retains the genome before the tail is assembled, whereas an open portal is found in the tail. Moreover, a fold including a seven-bladed β-propeller domain is described for the nozzle tail protein. The genome of double-stranded DNA bacteriophages is delivered to host cells through the viral portal and tail structures. Here the authors describe structures of the bacteriophage T7 portal and the 1.5 MDa tail complex formed by the portal protein, adaptor protein and nozzle, providing insight into how the portal and tail machinery work during DNA packaging and ejection.
ISSN:2041-1723
2041-1723
DOI:10.1038/s41467-019-11705-9