8GTB image
Deposition Date 2022-09-08
Release Date 2023-07-12
Last Version Date 2025-05-14
Entry Detail
PDB ID:
8GTB
Keywords:
Title:
Cryo-EM structure of the marine siphophage vB_DshS-R4C tail tube protein
Biological Source:
Source Organism:
Method Details:
Experimental Method:
Resolution:
3.43 Å
Aggregation State:
PARTICLE
Reconstruction Method:
HELICAL
Macromolecular Entities
Structures with similar UniProt ID
Protein Blast
Polymer Type:polypeptide(L)
Molecule:Major tail protein
Gene (Uniprot):vBDshSR4C_010
Chain IDs:A (auth: B), B (auth: A), C, D, E, F, G (auth: I), H (auth: G), I (auth: K), J (auth: M), K (auth: O), L (auth: Q), M (auth: J), N (auth: H), O (auth: L), P (auth: N), Q (auth: P), R
Chain Length:130
Number of Molecules:18
Biological Source:Dinoroseobacter phage vB_DshS-R4C
Ligand Molecules
Primary Citation
Structure and proposed DNA delivery mechanism of a marine roseophage.
Nat Commun 14 3609 3609 (2023)
PMID: 37330604 DOI: 10.1038/s41467-023-39220-y

Abstact

Tailed bacteriophages (order, Caudovirales) account for the majority of all phages. However, the long flexible tail of siphophages hinders comprehensive investigation of the mechanism of viral gene delivery. Here, we report the atomic capsid and in-situ structures of the tail machine of the marine siphophage, vB_DshS-R4C (R4C), which infects Roseobacter. The R4C virion, comprising 12 distinct structural protein components, has a unique five-fold vertex of the icosahedral capsid that allows genome delivery. The specific position and interaction pattern of the tail tube proteins determine the atypical long rigid tail of R4C, and further provide negative charge distribution within the tail tube. A ratchet mechanism assists in DNA transmission, which is initiated by an absorption device that structurally resembles the phage-like particle, RcGTA. Overall, these results provide in-depth knowledge into the intact structure and underlining DNA delivery mechanism for the ecologically important siphophages.

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Primary Citation of related structures