Cargando…

Biochemical and Structural Insights into the Mechanisms of SARS Coronavirus RNA Ribose 2′-O-Methylation by nsp16/nsp10 Protein Complex

The 5′-cap structure is a distinct feature of eukaryotic mRNAs, and eukaryotic viruses generally modify the 5′-end of viral RNAs to mimic cellular mRNA structure, which is important for RNA stability, protein translation and viral immune escape. SARS coronavirus (SARS-CoV) encodes two S-adenosyl-L-m...

Descripción completa

Detalles Bibliográficos
Autores principales: Chen, Yu, Su, Ceyang, Ke, Min, Jin, Xu, Xu, Lirong, Zhang, Zhou, Wu, Andong, Sun, Ying, Yang, Zhouning, Tien, Po, Ahola, Tero, Liang, Yi, Liu, Xinqi, Guo, Deyin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3192843/
https://www.ncbi.nlm.nih.gov/pubmed/22022266
http://dx.doi.org/10.1371/journal.ppat.1002294
_version_ 1782213807631761408
author Chen, Yu
Su, Ceyang
Ke, Min
Jin, Xu
Xu, Lirong
Zhang, Zhou
Wu, Andong
Sun, Ying
Yang, Zhouning
Tien, Po
Ahola, Tero
Liang, Yi
Liu, Xinqi
Guo, Deyin
author_facet Chen, Yu
Su, Ceyang
Ke, Min
Jin, Xu
Xu, Lirong
Zhang, Zhou
Wu, Andong
Sun, Ying
Yang, Zhouning
Tien, Po
Ahola, Tero
Liang, Yi
Liu, Xinqi
Guo, Deyin
author_sort Chen, Yu
collection PubMed
description The 5′-cap structure is a distinct feature of eukaryotic mRNAs, and eukaryotic viruses generally modify the 5′-end of viral RNAs to mimic cellular mRNA structure, which is important for RNA stability, protein translation and viral immune escape. SARS coronavirus (SARS-CoV) encodes two S-adenosyl-L-methionine (SAM)-dependent methyltransferases (MTase) which sequentially methylate the RNA cap at guanosine-N7 and ribose 2′-O positions, catalyzed by nsp14 N7-MTase and nsp16 2′-O-MTase, respectively. A unique feature for SARS-CoV is that nsp16 requires non-structural protein nsp10 as a stimulatory factor to execute its MTase activity. Here we report the biochemical characterization of SARS-CoV 2′-O-MTase and the crystal structure of nsp16/nsp10 complex bound with methyl donor SAM. We found that SARS-CoV nsp16 MTase methylated m7GpppA-RNA but not m7GpppG-RNA, which is in contrast with nsp14 MTase that functions in a sequence-independent manner. We demonstrated that nsp10 is required for nsp16 to bind both m7GpppA-RNA substrate and SAM cofactor. Structural analysis revealed that nsp16 possesses the canonical scaffold of MTase and associates with nsp10 at 1∶1 ratio. The structure of the nsp16/nsp10 interaction interface shows that nsp10 may stabilize the SAM-binding pocket and extend the substrate RNA-binding groove of nsp16, consistent with the findings in biochemical assays. These results suggest that nsp16/nsp10 interface may represent a better drug target than the viral MTase active site for developing highly specific anti-coronavirus drugs.
format Online
Article
Text
id pubmed-3192843
institution National Center for Biotechnology Information
language English
publishDate 2011
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-31928432011-10-21 Biochemical and Structural Insights into the Mechanisms of SARS Coronavirus RNA Ribose 2′-O-Methylation by nsp16/nsp10 Protein Complex Chen, Yu Su, Ceyang Ke, Min Jin, Xu Xu, Lirong Zhang, Zhou Wu, Andong Sun, Ying Yang, Zhouning Tien, Po Ahola, Tero Liang, Yi Liu, Xinqi Guo, Deyin PLoS Pathog Research Article The 5′-cap structure is a distinct feature of eukaryotic mRNAs, and eukaryotic viruses generally modify the 5′-end of viral RNAs to mimic cellular mRNA structure, which is important for RNA stability, protein translation and viral immune escape. SARS coronavirus (SARS-CoV) encodes two S-adenosyl-L-methionine (SAM)-dependent methyltransferases (MTase) which sequentially methylate the RNA cap at guanosine-N7 and ribose 2′-O positions, catalyzed by nsp14 N7-MTase and nsp16 2′-O-MTase, respectively. A unique feature for SARS-CoV is that nsp16 requires non-structural protein nsp10 as a stimulatory factor to execute its MTase activity. Here we report the biochemical characterization of SARS-CoV 2′-O-MTase and the crystal structure of nsp16/nsp10 complex bound with methyl donor SAM. We found that SARS-CoV nsp16 MTase methylated m7GpppA-RNA but not m7GpppG-RNA, which is in contrast with nsp14 MTase that functions in a sequence-independent manner. We demonstrated that nsp10 is required for nsp16 to bind both m7GpppA-RNA substrate and SAM cofactor. Structural analysis revealed that nsp16 possesses the canonical scaffold of MTase and associates with nsp10 at 1∶1 ratio. The structure of the nsp16/nsp10 interaction interface shows that nsp10 may stabilize the SAM-binding pocket and extend the substrate RNA-binding groove of nsp16, consistent with the findings in biochemical assays. These results suggest that nsp16/nsp10 interface may represent a better drug target than the viral MTase active site for developing highly specific anti-coronavirus drugs. Public Library of Science 2011-10-13 /pmc/articles/PMC3192843/ /pubmed/22022266 http://dx.doi.org/10.1371/journal.ppat.1002294 Text en Chen et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Chen, Yu
Su, Ceyang
Ke, Min
Jin, Xu
Xu, Lirong
Zhang, Zhou
Wu, Andong
Sun, Ying
Yang, Zhouning
Tien, Po
Ahola, Tero
Liang, Yi
Liu, Xinqi
Guo, Deyin
Biochemical and Structural Insights into the Mechanisms of SARS Coronavirus RNA Ribose 2′-O-Methylation by nsp16/nsp10 Protein Complex
title Biochemical and Structural Insights into the Mechanisms of SARS Coronavirus RNA Ribose 2′-O-Methylation by nsp16/nsp10 Protein Complex
title_full Biochemical and Structural Insights into the Mechanisms of SARS Coronavirus RNA Ribose 2′-O-Methylation by nsp16/nsp10 Protein Complex
title_fullStr Biochemical and Structural Insights into the Mechanisms of SARS Coronavirus RNA Ribose 2′-O-Methylation by nsp16/nsp10 Protein Complex
title_full_unstemmed Biochemical and Structural Insights into the Mechanisms of SARS Coronavirus RNA Ribose 2′-O-Methylation by nsp16/nsp10 Protein Complex
title_short Biochemical and Structural Insights into the Mechanisms of SARS Coronavirus RNA Ribose 2′-O-Methylation by nsp16/nsp10 Protein Complex
title_sort biochemical and structural insights into the mechanisms of sars coronavirus rna ribose 2′-o-methylation by nsp16/nsp10 protein complex
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3192843/
https://www.ncbi.nlm.nih.gov/pubmed/22022266
http://dx.doi.org/10.1371/journal.ppat.1002294
work_keys_str_mv AT chenyu biochemicalandstructuralinsightsintothemechanismsofsarscoronavirusrnaribose2omethylationbynsp16nsp10proteincomplex
AT suceyang biochemicalandstructuralinsightsintothemechanismsofsarscoronavirusrnaribose2omethylationbynsp16nsp10proteincomplex
AT kemin biochemicalandstructuralinsightsintothemechanismsofsarscoronavirusrnaribose2omethylationbynsp16nsp10proteincomplex
AT jinxu biochemicalandstructuralinsightsintothemechanismsofsarscoronavirusrnaribose2omethylationbynsp16nsp10proteincomplex
AT xulirong biochemicalandstructuralinsightsintothemechanismsofsarscoronavirusrnaribose2omethylationbynsp16nsp10proteincomplex
AT zhangzhou biochemicalandstructuralinsightsintothemechanismsofsarscoronavirusrnaribose2omethylationbynsp16nsp10proteincomplex
AT wuandong biochemicalandstructuralinsightsintothemechanismsofsarscoronavirusrnaribose2omethylationbynsp16nsp10proteincomplex
AT sunying biochemicalandstructuralinsightsintothemechanismsofsarscoronavirusrnaribose2omethylationbynsp16nsp10proteincomplex
AT yangzhouning biochemicalandstructuralinsightsintothemechanismsofsarscoronavirusrnaribose2omethylationbynsp16nsp10proteincomplex
AT tienpo biochemicalandstructuralinsightsintothemechanismsofsarscoronavirusrnaribose2omethylationbynsp16nsp10proteincomplex
AT aholatero biochemicalandstructuralinsightsintothemechanismsofsarscoronavirusrnaribose2omethylationbynsp16nsp10proteincomplex
AT liangyi biochemicalandstructuralinsightsintothemechanismsofsarscoronavirusrnaribose2omethylationbynsp16nsp10proteincomplex
AT liuxinqi biochemicalandstructuralinsightsintothemechanismsofsarscoronavirusrnaribose2omethylationbynsp16nsp10proteincomplex
AT guodeyin biochemicalandstructuralinsightsintothemechanismsofsarscoronavirusrnaribose2omethylationbynsp16nsp10proteincomplex