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Dengue Virus Nonstructural Protein 5 (NS5) Assembles into a Dimer with a Unique Methyltransferase and Polymerase Interface

Flavivirus nonstructural protein 5 (NS5) consists of methyltransferase (MTase) and RNA-dependent RNA polymerase (RdRp) domains, which catalyze 5’-RNA capping/methylation and RNA synthesis, respectively, during viral genome replication. Although the crystal structure of flavivirus NS5 is known, no da...

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Autores principales: Klema, Valerie J., Ye, Mengyi, Hindupur, Aditya, Teramoto, Tadahisa, Gottipati, Keerthi, Padmanabhan, Radhakrishnan, Choi, Kyung H.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4760774/
https://www.ncbi.nlm.nih.gov/pubmed/26895240
http://dx.doi.org/10.1371/journal.ppat.1005451
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author Klema, Valerie J.
Ye, Mengyi
Hindupur, Aditya
Teramoto, Tadahisa
Gottipati, Keerthi
Padmanabhan, Radhakrishnan
Choi, Kyung H.
author_facet Klema, Valerie J.
Ye, Mengyi
Hindupur, Aditya
Teramoto, Tadahisa
Gottipati, Keerthi
Padmanabhan, Radhakrishnan
Choi, Kyung H.
author_sort Klema, Valerie J.
collection PubMed
description Flavivirus nonstructural protein 5 (NS5) consists of methyltransferase (MTase) and RNA-dependent RNA polymerase (RdRp) domains, which catalyze 5’-RNA capping/methylation and RNA synthesis, respectively, during viral genome replication. Although the crystal structure of flavivirus NS5 is known, no data about the quaternary organization of the functional enzyme are available. We report the crystal structure of dengue virus full-length NS5, where eight molecules of NS5 are arranged as four independent dimers in the crystallographic asymmetric unit. The relative orientation of each monomer within the dimer, as well as the orientations of the MTase and RdRp domains within each monomer, is conserved, suggesting that these structural arrangements represent the biologically relevant conformation and assembly of this multi-functional enzyme. Essential interactions between MTase and RdRp domains are maintained in the NS5 dimer via inter-molecular interactions, providing evidence that flavivirus NS5 can adopt multiple conformations while preserving necessary interactions between the MTase and RdRp domains. Furthermore, many NS5 residues that reduce viral replication are located at either the inter-domain interface within a monomer or at the inter-molecular interface within the dimer. Hence the X-ray structure of NS5 presented here suggests that MTase and RdRp activities could be coordinated as a dimer during viral genome replication.
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spelling pubmed-47607742016-03-07 Dengue Virus Nonstructural Protein 5 (NS5) Assembles into a Dimer with a Unique Methyltransferase and Polymerase Interface Klema, Valerie J. Ye, Mengyi Hindupur, Aditya Teramoto, Tadahisa Gottipati, Keerthi Padmanabhan, Radhakrishnan Choi, Kyung H. PLoS Pathog Research Article Flavivirus nonstructural protein 5 (NS5) consists of methyltransferase (MTase) and RNA-dependent RNA polymerase (RdRp) domains, which catalyze 5’-RNA capping/methylation and RNA synthesis, respectively, during viral genome replication. Although the crystal structure of flavivirus NS5 is known, no data about the quaternary organization of the functional enzyme are available. We report the crystal structure of dengue virus full-length NS5, where eight molecules of NS5 are arranged as four independent dimers in the crystallographic asymmetric unit. The relative orientation of each monomer within the dimer, as well as the orientations of the MTase and RdRp domains within each monomer, is conserved, suggesting that these structural arrangements represent the biologically relevant conformation and assembly of this multi-functional enzyme. Essential interactions between MTase and RdRp domains are maintained in the NS5 dimer via inter-molecular interactions, providing evidence that flavivirus NS5 can adopt multiple conformations while preserving necessary interactions between the MTase and RdRp domains. Furthermore, many NS5 residues that reduce viral replication are located at either the inter-domain interface within a monomer or at the inter-molecular interface within the dimer. Hence the X-ray structure of NS5 presented here suggests that MTase and RdRp activities could be coordinated as a dimer during viral genome replication. Public Library of Science 2016-02-19 /pmc/articles/PMC4760774/ /pubmed/26895240 http://dx.doi.org/10.1371/journal.ppat.1005451 Text en © 2016 Klema 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
Klema, Valerie J.
Ye, Mengyi
Hindupur, Aditya
Teramoto, Tadahisa
Gottipati, Keerthi
Padmanabhan, Radhakrishnan
Choi, Kyung H.
Dengue Virus Nonstructural Protein 5 (NS5) Assembles into a Dimer with a Unique Methyltransferase and Polymerase Interface
title Dengue Virus Nonstructural Protein 5 (NS5) Assembles into a Dimer with a Unique Methyltransferase and Polymerase Interface
title_full Dengue Virus Nonstructural Protein 5 (NS5) Assembles into a Dimer with a Unique Methyltransferase and Polymerase Interface
title_fullStr Dengue Virus Nonstructural Protein 5 (NS5) Assembles into a Dimer with a Unique Methyltransferase and Polymerase Interface
title_full_unstemmed Dengue Virus Nonstructural Protein 5 (NS5) Assembles into a Dimer with a Unique Methyltransferase and Polymerase Interface
title_short Dengue Virus Nonstructural Protein 5 (NS5) Assembles into a Dimer with a Unique Methyltransferase and Polymerase Interface
title_sort dengue virus nonstructural protein 5 (ns5) assembles into a dimer with a unique methyltransferase and polymerase interface
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4760774/
https://www.ncbi.nlm.nih.gov/pubmed/26895240
http://dx.doi.org/10.1371/journal.ppat.1005451
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