Abstract

During systemic RNA interference (RNAi) in Caenorhabditis elegans, RNA spreads across different cells and tissues in a process that requires the systemic RNA interference deficient-1 (sid-1) gene, which encodes an integral membrane protein. SID-1 acts cell-autonomously and is required for cellular import of interfering RNAs. Heterologous expression of SID-1 in Drosophila Schneider 2 cells enables passive uptake of dsRNA and subsequent soaking RNAi. Previous studies have suggested that SID-1 may serve as an RNA channel, but its precise molecular role remains unclear. To test the hypothesis that SID-1 mediates a direct biochemical recognition of RNA molecule and subsequent permeation, we expressed the extracellular domain (ECD) of SID-1 and purified it to near homogeneity. Recombinant purified SID-1 ECD selectively binds dsRNA but not dsDNA in a length-dependent and sequence-independent manner. Genetic missense mutations in SID-1 ECD causal for deficient systemic RNAi resulted in significant reduction in its affinity for dsRNA. Furthermore, full-length proteins with these mutations decrease SID-1-mediated RNA transport efficiency, providing evidence that dsRNA binding to SID-1 ECD is related to RNA transport. To examine the functional similarity of mammalian homologs of SID-1 (SIDT1 and SIDT2), we expressed and purified mouse SIDT1 and SIDT2 ECDs. We show that they bind long dsRNA in vitro, supportive of dsRNA recognition. In summary, our study illustrates the functional importance of SID-1 ECD as a dsRNA binding domain that contributes to RNA transport.

Highlights

  • Systemic RNA interference deficiency-1 (SID-1) is a membrane protein required for cellular uptake of RNA in C. elegans

  • Our study shows that the SID-1 extracellular domain (ECD) selectively binds dsRNA and that disruption of dsRNA binding by the ECD diminishes dsRNA uptake

  • Multiple ␤ strands and ␣ helices are predicted in SID-1 ECD, but no known discernable dsRNA binding domain or motif can be identified by sequence alone

Read more

Summary

Background

Systemic RNA interference deficiency-1 (SID-1) is a membrane protein required for cellular uptake of RNA in C. elegans. SID-1 ECD-dsRNA Binding Is Related to RNA Transport by SID-1 these results in S2 cells, heterologous expression of SID-1 in Bombyx mori BmN4 cells, Spodoptera frugiperda Sf9 cells, and Mus musculus embryonic stem cells enables soaking RNAi (8 –11). These different lines of evidence argue for a specific biochemical step by which SID-1 recognizes and differentiates RNA substrates for transport. Our results support a role for the SID-1 ECD in selectively binding long dsRNA and show that this activity is required for RNA transport by full-length SID-1

Experimental Procedures
Results
Discussion
Full Text
Published version (Free)

Talk to us

Join us for a 30 min session where you can share your feedback and ask us any queries you have

Schedule a call