Summary information and primary citation
- PDB-id
-
8hf1;
DSSR-derived features in text and
JSON formats; DNAproDB
- Class
- RNA binding protein-RNA
- Method
- cryo-EM (3.7 Å)
- Summary
- Dmdcr-2-r2d2-loqspd with 19bp-dsrna in trimer
state
- Reference
-
Deng T, Su S, Yuan X, He J, Huang Y, Ma J, Wang J (2023):
"Structural
mechanism of R2D2 and Loqs-PD synergistic modulation on
DmDcr-2 oligomers." Nat Commun,
14, 5228. doi: 10.1038/s41467-023-40919-1.
- Abstract
- Small interference RNAs are the key components of RNA
interference, a conserved RNA silencing or viral defense
mechanism in many eukaryotes. In Drosophila melanogaster,
Dicer-2 (DmDcr-2)-mediated RNAi pathway plays important
roles in defending against viral infections and protecting
genome integrity. During the maturation of siRNAs, two
cofactors can regulate DmDcr-2's functions: Loqs-PD that is
required for dsRNA processing, and R2D2 that is essential
for the subsequent loading of siRNAs into effector Ago2 to
form RISC complexes. However, due to the lack of structural
information, it is still unclear whether R2D2 and Loqs-PD
affect the functions of DmDcr-2 simultaneously. Here we
present several cryo-EM structures of DmDcr-2/R2D2/Loqs-PD
complex bound to dsRNAs with various lengths by the
Helicase domain. These structures revealed that R2D2 and
Loqs-PD can bind to different regions of DmDcr-2 without
interfering with each other. Furthermore, the cryo-EM
results demonstrate that these complexes can form large
oligomers and assemble into fibers. The formation and
depolymerization of these oligomers are associated with ATP
hydrolysis. These findings provide insights into the
structural mechanism of DmDcr-2 and its cofactors during
siRNA processing.