4.8 Article

Structure of the archaeal head-tailed virus HSTV-1 completes the HK97 fold story

Publisher

NATL ACAD SCIENCES
DOI: 10.1073/pnas.1303047110

Keywords

archaeal virus; virus evolution; major capsid protein fold

Funding

  1. Howard Hughes Medical Institute Professorship
  2. National Institutes of Health [GM51975, R01GM47795]
  3. Academy of Finland [255342, 256518, 129684, 139178]
  4. University of Helsinki
  5. Academy of Finland (AKA) [139178, 129684, 129684, 139178] Funding Source: Academy of Finland (AKA)

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It has been proposed that viruses can be divided into a small number of structure-based viral lineages. One of these lineages is exemplified by bacterial virus Hong Kong 97 (HK97), which represents the head-tailed dsDNA bacteriophages. Seemingly similar viruses also infect archaea. Here we demonstrate using genomic analysis, electron cryomicroscopy, and image reconstruction that the major coat protein fold of newly isolated archaeal Haloarcula sinaiiensis tailed virus 1 has the canonical coat protein fold of HK97. Although it has been anticipated previously, this is physical evidence that bacterial and archaeal head-tailed viruses share a common architectural principle. The HK97-like fold has previously been recognized also in herpesviruses, and this study expands the HK97-like lineage to viruses from all three domains of life. This is only the second established lineage to include archaeal, bacterial, and eukaryotic viruses. Thus, our findings support the hypothesis that the last common universal ancestor of cellular organisms was infected by a number of different viruses.

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