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April 18, 2026Science14 citations

Protein-templated synthesis of dinucleotide repeat DNA by an antiphage reverse transcriptase

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PDPujuan DengHLHyunbin LeeCACarlo Armijo

Key Points

  • The study aims to characterize the function of the reverse transcriptase DRT3 in synthesizing specific DNA sequences.
  • Utilized cryo-electron microscopy to analyze the structure of the DRT3 complex.
  • Investigated the roles of Drt3a and Drt3b in synthesizing poly(GT) and poly(AC) strands.
  • Examined the mechanisms by which Drt3b synthesizes DNA without a nucleic acid template.
  • Discovered the D3-symmetric complex structure of Drt3a, Drt3b, and ncRNA at 2.6 Å resolution.
  • Confirmed that Drt3a synthesizes a poly(GT) strand using a specific RNA template.
  • Demonstrated that Drt3b can synthesize a complementary poly(AC) strand using a protein primer without any nucleic acid template.

Abstract

Defense-associated reverse transcriptases (DRTs) are widespread bacterial anti-phage systems that use unconventional mechanisms of polynucleotide synthesis. We show that DRT3, which comprises two distinct RTs (Drt3a and Drt3b) and a noncoding RNA (ncRNA), synthesizes alternating poly(GT/AC) double-stranded DNA. Cryo–electron microscopy structures at 2.6 Å resolution reveal a D3-symmetric 6:6:6 complex of Drt3a, Drt3b, and ncRNA. Drt3a produces the poly(GT) strand using a conserved ACACAC template within the ncRNA. Notably, Drt3b synthesizes a complementary, protein-primed poly(AC) strand in the complete absence of a nucleic acid template, using conserved active site residues specific to Drt3b to enforce precise base alternation. These findings expand the functional landscape of nucleic acid polymerases, revealing a protein-templated mechanism for sequence-specific DNA synthesis.

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Cite This Study

Deng et al. (2026) studied this question.

synapsesocial.com/papers/69e31ff140886becb653f192https://doi.org/10.1126/science.aed1656
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