RNA helicase DDX1 converts RNA G-quadruplex structures into R-loops to promote IgH class switch recombination
Authors
- C. Ribeiro de Almeida
- S. Dhir
- A. Dhir
- A.E. Moghaddam
- Q. Sattentau
- A. Meinhart
- N.J. Proudfoot
Journal
- Molecular Cell
Citation
- Mol Cell 70 (4): 650-662
Abstract
Class switch recombination (CSR) at the immunoglobulin heavy-chain (IgH) locus is associated with the formation of R-loop structures over switch (S) regions. While these often occur co-transcriptionally between nascent RNA and template DNA, we now show that they also form as part of a post-transcriptional mechanism targeting AID to IgH S-regions. This depends on the RNA helicase DDX1 that is also required for CSR in vivo. DDX1 binds to G-quadruplex (G4) structures present in intronic switch transcripts and converts them into S-region R-loops. This in turn targets the cytidine deaminase enzyme AID to S-regions so promoting CSR. Notably R-loop levels over S-regions are diminished by chemical stabilization of G4 RNA or by the expression of a DDX1 ATPase-deficient mutant that acts as a dominant-negative protein to reduce CSR efficiency. In effect, we provide evidence for how S-region transcripts interconvert between G4 and R-loop structures to promote CSR in the IgH locus.