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8PQ8

Sak Single Strand Annealing Protein from Staphylococcal Bacteriophage 80a - dCTD

Summary for 8PQ8
Entry DOI10.2210/pdb8pq8/pdb
EMDB information17821
DescriptorTopoisomerase (2 entities in total)
Functional Keywordsannealase, ssap, single strand annealing, single strand binding, recombineering, recombination, sapi, bacteriophage, staphylococcal, complex, sapi induction, sapi2, mobile genetic element, mge, pici, phage-inducible chromosomal island, c18, ring
Biological sourceStaphylococcus phage 80alpha
Total number of polymer chains1
Total formula weight19417.62
Authors
Debiasi-Anders, G.,Mir-Sanchis, I. (deposition date: 2023-07-10, release date: 2025-02-12, Last modification date: 2025-03-05)
Primary citationDebiasi-Anders, G.,Qiao, C.,Salim, A.,Li, N.,Mir-Sanchis, I.
Phage parasites targeting phage homologous recombinases provide antiviral immunity.
Nat Commun, 16:1889-1889, 2025
Cited by
PubMed Abstract: Bacteria often carry multiple genes encoding anti-phage defense systems, clustered in defense islands and phage satellites. Various unrelated anti-phage defense systems target phage-encoded homologous recombinases (HRs) through unclear mechanisms. Here, we show that the phage satellite SaPI2, which does not encode orthodox anti-phage defense systems, provides antiviral immunity mediated by Stl2, the SaPI2-encoded transcriptional repressor. Stl2 targets and inhibits phage-encoded HRs, including Sak and Sak4, two HRs from the Rad52-like and Rad51-like superfamilies. Remarkably, apo Stl2 forms a collar of dimers oligomerizing as closed rings and as filaments, mimicking the quaternary structure of its targets. Stl2 decorates both Sak rings and Sak4 filaments. The oligomerization of Stl2 as a collar of dimers is necessary for its inhibitory activity both in vitro and in vivo. Our results shed light on the mechanisms underlying antiviral immunity against phages carrying divergent HRs.
PubMed: 39987160
DOI: 10.1038/s41467-025-57156-3
PDB entries with the same primary citation
Experimental method
ELECTRON MICROSCOPY (3.21 Å)
Structure validation

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PDB entries from 2025-05-21

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