Conserved stem-loops of the SARS-CoV-2 5'-UTR activate OAS1
Oviedo, A.; Bair, C. R.; Vasilakopoulos, A. P.; Regis, K.; VanInsberghe, D.; Lowen, A. C.; Conn, G. L.
Show abstract
The innate immune system relies on pathogen recognition receptors, such as the 2,5-oligoadenylate synthetase (OAS) proteins, to detect pathogen-associated molecular patterns like viral doublestranded (ds)RNA. A specific splicing variant of OAS1 (OAS1-p46) has been implicated in initiating an immune response that leads to decreased disease severity during SARS-CoV-2 infection. OAS1-p46 has a C-terminal lipid modification motif that allows for anchoring of the protein to intracellular membranes and thus potential colocalization with immunogenic viral RNA regions such as the SARS-CoV-2 5-untranslated region (5-UTR). Here, we show that OAS proteins can detect the 5-structured elements (5-SE)-comprising the 5-UTR and three additional stem-loop structures-and activate the cellular RNase L pathway. Through systematic 3-end truncations of the 5-SE, we show that the smallest 5-SE fragment capable of potently activating OAS1 is the conserved and highly structured SL1-4b region, containing the first four stem-loop structures and their intervening linking sequences (SL1-4), as well as an unstructured region ("SL4b") to the 3-side of SL4. Analyses of OAS1 activation and RNA secondary structure probing using selective 2-hydroxyl acylation analyzed by primer extension and mutational profiling (SHAPE-MaP) of additional SL1-4b RNA variants suggests a model in which SL4 acts as the primary OAS1 interaction site, while the unstructured SL4b region and two other stem-loops (SL1 and SL3) are necessary for optimal presentation of this region for OAS1 activation. Our findings reveal a structurally complex viral RNA region that potently activates OAS1, underscoring the potential complexity of RNAs that can strongly activate this innate immune sensor.
Matching journals
The top 2 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Rotavirus RNA chaperone mediates global transcriptome-wide increase in RNA backbone flexibility 97%
- Characterization of SARS2 Nsp15 Nuclease Activity Reveals it's Mad About U 97%
- 2'-O -methylation of the second transcribed nucleotide within mRNA 5' cap impacts protein production level in a cell specific manner and contributes to RNA immune evasion 97%
Similar papers in this journal
- Molecular basis for the distinct cellular functions of the Lsm1-7 and Lsm2-8 complexes 97%
- 40S ribosomal subunits scan mRNA for the start codon by one-dimensional diffusion 96%
- Prevention of ribozyme catalysis through cDNA synthesis enables accurate RT-qPCR measurements of context-dependent ribozyme activity 95%
Similar papers in this journal
- RNA Modifications and Prp24 Coordinate Lsm2-8 Binding Dynamics during S. cerevisiae U6 snRNP Assembly 97%
- Assembly of SARS-CoV-2 ribonucleosomes by truncated N* variant of the nucleocapsid protein 97%
- A non-canonical RNA-binding domain of the Fragile X protein, FMRP, elicits translational repression independent of mRNA G-quadruplexes 97%
Similar papers in this journal
- Obligate movements of an active site-linked surface domain control RNA polymerase elongation and pausing via a Phe-pocket anchor 96%
- Biochemical and structural insights into a 5' to 3' RNA ligase reveal a potential role in tRNA ligation 96%
- Structure-function analysis of the nsp14 N7-guanine methyltransferase reveals an essential role in Betacoronavirus replication 96%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.