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Structural and functional insights into the enzymatic plasticity of the SARS-CoV-2 NiRAN Domain.


ABSTRACT: The enzymatic activity of the SARS-CoV-2 nidovirus RdRp-associated nucleotidyltransferase (NiRAN) domain is essential for viral propagation, with three distinct activities associated with modification of the nsp9 N-terminus, NMPylation, RNAylation, and deRNAylation/capping via a GDP-polyribonucleotidyltransferase reaction. The latter two activities comprise an unconventional mechanism for initiating viral RNA 5'-cap formation, while the role of NMPylation is unclear. The structural mechanisms for these diverse enzymatic activities have not been properly delineated. Here we determine high-resolution cryo-electron microscopy structures of catalytic intermediates for the NMPylation and deRNAylation/capping reactions, revealing diverse nucleotide binding poses and divalent metal ion coordination sites to promote its repertoire of activities. The deRNAylation/capping structure explains why GDP is a preferred substrate for the capping reaction over GTP. Altogether, these findings enhance our understanding of the promiscuous coronaviral NiRAN domain, a therapeutic target, and provide an accurate structural platform for drug development.

SUBMITTER: Small GI 

PROVIDER: S-EPMC10557602 | biostudies-literature | 2023 Sep

REPOSITORIES: biostudies-literature

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Structural and functional insights into the enzymatic plasticity of the SARS-CoV-2 NiRAN Domain.

Small Gabriel I GI   Fedorova Olga O   Olinares Paul Dominic B PDB   Chandanani Joshua J   Banerjee Anoosha A   Choi Young Joo YJ   Molina Henrik H   Chait Brian B   Darst Seth A SA   Campbell Elizabeth A EA  

bioRxiv : the preprint server for biology 20230926


The enzymatic activity of the SARS-CoV-2 nidovirus RdRp-associated nucleotidyltransferase (NiRAN) domain is essential for viral propagation, with three distinct activities associated with modification of the nsp9 N-terminus, NMPylation, RNAylation, and deRNAylation/capping via a GDP-polyribonucleotidyltransferase reaction. The latter two activities comprise an unconventional mechanism for initiating viral RNA 5'-cap formation, while the role of NMPylation is unclear. The structural mechanisms fo  ...[more]

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