Summary information and primary citation
- PDB-id
-
9i2g;
DSSR-derived features in text and
JSON formats; DNAproDB
- Class
- antiviral protein
- Method
- cryo-EM (3.0 Å)
- Summary
- cryo-EM structure of retron eco2 (ec67) in presence of
mg ions
- Reference
-
Jasnauskaite M, Juozapaitis J, Liegute T, Grigaitis R,
Skorupskaite A, Steinchen W, Miksys A, Truncaite L,
Kazlauskaite K, Torres Jimenez MF, Khochare S, Dudas G,
Bange G, Malinauskaite L, Songailiene I, Pausch P (2026):
"Structure
and mechanism of antiphage retron Eco2."
Nat.Struct.Mol.Biol., 33,
330-340. doi: 10.1038/s41594-026-01754-2.
- Abstract
- Retrons are prokaryotic reverse transcriptase systems
that produce multicopy single-stranded DNA (msDNA), yet the
principles by which they mediate antiviral defense remain
largely unresolved. Here we investigate the mechanism of
Escherichia coli Eco2, a minimal retron composed of a
single reverse transcriptase-nuclease fusion protein.
Cryogenic electron microscopy and hydrogen/deuterium
exchange mass spectrometry reveal the structures and
dynamics of a trimeric nucleoprotein complex assembled
within a branched msDNA scaffold, which cages the TOPRIM
nucleases. We show that the phage-encoded endonuclease DenB
initiates msDNA degradation, thereby unblocking the
nuclease active sites. Activated Eco2 cuts transfer RNAs,
resulting in translational shutdown for antiphage defense.
We further identify ribosomal protein S1 as a putative RNA
chaperone that associates with the msDNA precursor. These
findings provide insights into the molecular mechanisms of
minimal retrons and establish a structural basis for
engineering of Eco2.