EMD-26073

Single-particle
3.43 Å
EMD-26073 Deposition: 27/01/2022
Map released: 23/03/2022
Last modified: 12/06/2024
Overview 3D View Sample Experiment Validation Volume Browser Additional data Links
Overview 3D View Sample Experiment Validation Volume Browser Additional data Links

EMD-26073

SARS-CoV-2 endoribonuclease Nsp15 bound to dsRNA

EMD-26073

Single-particle
3.43 Å
EMD-26073 Deposition: 27/01/2022
Map released: 23/03/2022
Last modified: 12/06/2024
Overview 3D View Sample Experiment Validation Volume Browser Additional data Links
Sample Organism: Severe acute respiratory syndrome coronavirus 2, unidentified
Sample: Nsp15/dsRNA
Fitted models: 7tqv (Avg. Q-score: 0.387)

Deposition Authors: Frazier MN , Krahn JM
Flipped over U: structural basis for dsRNA cleavage by the SARS-CoV-2 endoribonuclease.
Frazier MN , Wilson IM, Krahn JM, Butay KJ, Dillard LB, Borgnia MJ, Stanley RE
(2022) Nucleic Acids Res , 50 , 8290 - 8301
PUBMED: 35801916
DOI: doi:10.1093/nar/gkac589
ISSN: 1362-4962
ASTM: NARHAD
Abstract:
Coronaviruses generate double-stranded (ds) RNA intermediates during viral replication that can activate host immune sensors. To evade activation of the host pattern recognition receptor MDA5, coronaviruses employ Nsp15, which is a uridine-specific endoribonuclease. Nsp15 is proposed to associate with the coronavirus replication-transcription complex within double-membrane vesicles to cleave these dsRNA intermediates. How Nsp15 recognizes and processes dsRNA is poorly understood because previous structural studies of Nsp15 have been limited to small single-stranded (ss) RNA substrates. Here we present cryo-EM structures of SARS-CoV-2 Nsp15 bound to a 52nt dsRNA. We observed that the Nsp15 hexamer forms a platform for engaging dsRNA across multiple protomers. The structures, along with site-directed mutagenesis and RNA cleavage assays revealed critical insight into dsRNA recognition and processing. To process dsRNA Nsp15 utilizes a base-flipping mechanism to properly orient the uridine within the active site for cleavage. Our findings show that Nsp15 is a distinctive endoribonuclease that can cleave both ss- and dsRNA effectively.