ArticlePLoS biology2023
Eukaryotic CD-NTase, STING, and viperin proteins evolved via domain shuffling, horizontal transfer, and ancient inheritance from prokaryotes.
Article in PLoS biology, 2023. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 27 papers.
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27 citing papers in PubMed, 34 citations in OpenAlex.
- Review
- Antiviral immunity regulates cnidarian viriomes.Nature ecology & evolution · 2026Article
- Alternative splicing broadens antiviral diversity at the human OAS2 locus.The EMBO journal · 2026Article
- Evolutionary analysis of transcription elongation factors reveals conserved and lineage-specific regulatory domains.PLoS biology · 2026Article
- Structural genomics sheds light on protein functions and remote homologs across the insect tree of life.Cell research · 2026Article
- Eukaryotic domestication of a bacterial immune protein following horizontal transfer.bioRxiv : the preprint server for biology · 2026Article
- Bacterial 2',3'-cGAMP activates a SAVED effector to form membrane-disrupting filaments and restrict phage replication.Cell host & microbe · 2026Article
- Diversity and evolution of archaeal immune strategies.Nucleic acids research · 2026Article
- Manipulation of the nucleotide pool in human, bacterial and plant immunity.Nature reviews. Immunology · 2026Review
- Review
- A choanoflagellate cGLR-STING pathway reveals evolutionary links between bacterial and animal immunity.bioRxiv : the preprint server for biology · 2025Article
- Horizontal Transfer of Bacterial Operons into Eukaryote Genomes.Genome biology and evolution · 2025Article
- Signalling by co-operative higher-order assembly formation: linking evidence at molecular and cellular levels.The Biochemical journal · 2025Review
- Phages carry orphan antitoxin-like enzymes to neutralize the DarTG1 toxin-antitoxin defense system.Nature communications · 2025Article
- Experimental horizontal transfer of phage-derived genes to Drosophila confers innate immunity to parasitoids.Current biology : CB · 2025Article
- Antiviral Mx proteins have an ancient origin and widespread distribution among eukaryotes.Proceedings of the National Academy of Sciences of the United States of America · 2025Article
- Experimental recombining of repetitive motifs leads to large functional metallothioneins and demonstrates their modular evolvability potential.Protein science : a publication of the Protein Society · 2025Article
- Evolutionary history of an immune protein conserved across all domains of life.Nature ecology & evolution · 2024Article
- Viperin immunity evolved across the tree of life through serial innovations on a conserved scaffold.Nature ecology & evolution · 2024Article
- Antiviral Mx proteins have an ancient origin and widespread distribution among eukaryotes.bioRxiv : the preprint server for biology · 2024Article
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2 authors at 1 institution in 1 country.
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Abstract
Animals use a variety of cell-autonomous innate immune proteins to detect viral infections and prevent replication. Recent studies have discovered that a subset of mammalian antiviral proteins have homology to antiphage defense proteins in bacteria, implying that there are aspects of innate immunity that are shared across the Tree of Life. While the majority of these studies have focused on characterizing the diversity and biochemical functions of the bacterial proteins, the evolutionary relationships between animal and bacterial proteins are less clear. This ambiguity is partly due to the long evolutionary distances separating animal and bacterial proteins, which obscures their relationships. Here, we tackle this problem for 3 innate immune families (CD-NTases [including cGAS], STINGs, and viperins) by deeply sampling protein diversity across eukaryotes. We find that viperins and OAS family CD-NTases are ancient immune proteins, likely inherited since the earliest eukaryotes first arose. In contrast, we find other immune proteins that were acquired via at least 4 independent events of horizontal gene transfer (HGT) from bacteria. Two of these events allowed algae to acquire new bacterial viperins, while 2 more HGT events gave rise to distinct superfamilies of eukaryotic CD-NTases: the cGLR superfamily (containing cGAS) that has since diversified via a series of animal-specific duplications and a previously undefined eSMODS superfamily, which more closely resembles bacterial CD-NTases. Finally, we found that cGAS and STING proteins have substantially different histories, with STING protein domains undergoing convergent domain shuffling in bacteria and eukaryotes. Overall, our findings paint a picture of eukaryotic innate immunity as highly dynamic, where eukaryotes build upon their ancient antiviral repertoires through the reuse of protein domains and by repeatedly sampling a rich reservoir of bacterial antiphage genes.
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