The polinton-like supergroup of viruses: evolution, molecular biology, and taxonomy

Author:

Koonin Eugene V.1ORCID,Fischer Matthias G.2ORCID,Kuhn Jens H.3ORCID,Krupovic Mart4ORCID

Affiliation:

1. National Center for Biotechnology Information, National Library of Medicine, National Institutes of Health, Bethesda, Maryland, USA

2. Department of Biomolecular Mechanisms, Max Planck Institute for Medical Research, Heidelberg, Germany

3. Integrated Research Facility at Fort Detrick, Division of Clinical Research, National Institute of Allergy and Infectious Diseases, National Institutes of Health, Fort Detrick, Frederick, Maryland, USA

4. Institut Pasteur, Université Paris Cité, Archaeal Virology Unit, Paris, France

Abstract

SUMMARY Polintons are 15–20 kb-long self-synthesizing transposons that are widespread in eukaryotic, and in particular protist, genomes. Apart from a transposase and a protein-primed DNA polymerase, polintons encode homologs of major and minor jelly-roll capsid proteins, DNA-packaging ATPases, and proteases involved in capsid maturation of diverse eukaryotic viruses of kingdom Bamfordvirae . Given the conservation of these structural and morphogenetic proteins among polintons, these elements are predicted to alternate between transposon and viral lifestyles and, although virions have thus far not been detected, are classified as viruses (class Polintoviricetes ) in the phylum Preplasmiviricota . Related to polintoviricetes are vertebrate adenovirids; unclassified polinton-like viruses (PLVs) identified in various environments or integrated into diverse protist genomes; virophages ( Maveriviricetes ), which are part of tripartite hyperparasitic systems including protist hosts and giant viruses; and capsid-less derivatives, such as cytoplasmic linear DNA plasmids of fungi and transpovirons. Phylogenomic analysis indicates that the polinton-like supergroup of viruses bridges bacterial tectivirids (preplasmiviricot class Tectiliviricetes ) to the phylum Nucleocytoviricota that includes large and giant eukaryotic DNA viruses. Comparative structural analysis of proteins encoded by polinton-like viruses led to the discovery of previously undetected functional domains, such as terminal proteins and distinct proteases implicated in DNA polymerase processing, and clarified the evolutionary relationships within Polintoviricetes . Here, we leverage these insights into the evolution of the polinton-like supergroup to develop an amended megataxonomy that groups Polintoviricetes , PLVs (new class ‘ Aquintoviricetes ’), and virophages (renamed class ‘ Virophaviricetes ’) together with Adenoviridae (new class ‘ Pharingeaviricetes ’) in a preplasmiviricot subphylum ‘ Polisuviricotina ’ sister to a subphylum including Tectiliviricetes (‘ Prepoliviricotina ’).

Funder

HHS | National Institutes of Health

Publisher

American Society for Microbiology

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