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Atomic Structure of the Trichomonas vaginalis Double-Stranded RNA Virus 2

Trichomonas vaginalis, the causative pathogen for the most common nonviral sexually transmitted infection worldwide, is itself frequently infected with one or more of the four types of small double-stranded RNA (dsRNA) Trichomonas vaginalis viruses (TVV1 to 4, genus Trichomonasvirus, family Totiviri...

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Autores principales: Stevens, Alexander, Muratore, Katherine, Cui, Yanxiang, Johnson, Patricia J., Zhou, Z. Hong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Microbiology 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8092272/
https://www.ncbi.nlm.nih.gov/pubmed/33785622
http://dx.doi.org/10.1128/mBio.02924-20
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author Stevens, Alexander
Muratore, Katherine
Cui, Yanxiang
Johnson, Patricia J.
Zhou, Z. Hong
author_facet Stevens, Alexander
Muratore, Katherine
Cui, Yanxiang
Johnson, Patricia J.
Zhou, Z. Hong
author_sort Stevens, Alexander
collection PubMed
description Trichomonas vaginalis, the causative pathogen for the most common nonviral sexually transmitted infection worldwide, is itself frequently infected with one or more of the four types of small double-stranded RNA (dsRNA) Trichomonas vaginalis viruses (TVV1 to 4, genus Trichomonasvirus, family Totiviridae). Each TVV encloses a nonsegmented genome within a single-layered capsid and replicates entirely intracellularly, like many dsRNA viruses, and unlike those in the Reoviridae family. Here, we have determined the structure of TVV2 by cryo-electron microscopy (cryoEM) at 3.6 Å resolution and derived an atomic model of its capsid. TVV2 has an icosahedral, T = 2*, capsid comprised of 60 copies of the icosahedral asymmetric unit (a dimer of the two capsid shell protein [CSP] conformers, CSP-A and CSP-B), typical of icosahedral dsRNA virus capsids. However, unlike the robust CSP-interlocking interactions such as the use of auxiliary “clamping” proteins among Reoviridae, only lateral CSP interactions are observed in TVV2, consistent with an assembly strategy optimized for TVVs’ intracellular-only replication cycles within their protozoan host. The atomic model reveals both a mostly negatively charged capsid interior, which is conducive to movement of the loosely packed genome, and channels at the 5-fold vertices, which we suggest as routes of mRNA release during transcription. Structural comparison of TVV2 to the Saccharomyces cerevisiae L-A virus reveals a conserved helix-rich fold within the CSP and putative guanylyltransferase domain along the capsid exterior, suggesting conserved mRNA maintenance strategies among Totiviridae. This first atomic structure of a TVV provides a framework to guide future biochemical investigations into the interplay between Trichomonas vaginalis and its viruses.
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spelling pubmed-80922722021-05-04 Atomic Structure of the Trichomonas vaginalis Double-Stranded RNA Virus 2 Stevens, Alexander Muratore, Katherine Cui, Yanxiang Johnson, Patricia J. Zhou, Z. Hong mBio Research Article Trichomonas vaginalis, the causative pathogen for the most common nonviral sexually transmitted infection worldwide, is itself frequently infected with one or more of the four types of small double-stranded RNA (dsRNA) Trichomonas vaginalis viruses (TVV1 to 4, genus Trichomonasvirus, family Totiviridae). Each TVV encloses a nonsegmented genome within a single-layered capsid and replicates entirely intracellularly, like many dsRNA viruses, and unlike those in the Reoviridae family. Here, we have determined the structure of TVV2 by cryo-electron microscopy (cryoEM) at 3.6 Å resolution and derived an atomic model of its capsid. TVV2 has an icosahedral, T = 2*, capsid comprised of 60 copies of the icosahedral asymmetric unit (a dimer of the two capsid shell protein [CSP] conformers, CSP-A and CSP-B), typical of icosahedral dsRNA virus capsids. However, unlike the robust CSP-interlocking interactions such as the use of auxiliary “clamping” proteins among Reoviridae, only lateral CSP interactions are observed in TVV2, consistent with an assembly strategy optimized for TVVs’ intracellular-only replication cycles within their protozoan host. The atomic model reveals both a mostly negatively charged capsid interior, which is conducive to movement of the loosely packed genome, and channels at the 5-fold vertices, which we suggest as routes of mRNA release during transcription. Structural comparison of TVV2 to the Saccharomyces cerevisiae L-A virus reveals a conserved helix-rich fold within the CSP and putative guanylyltransferase domain along the capsid exterior, suggesting conserved mRNA maintenance strategies among Totiviridae. This first atomic structure of a TVV provides a framework to guide future biochemical investigations into the interplay between Trichomonas vaginalis and its viruses. American Society for Microbiology 2021-03-30 /pmc/articles/PMC8092272/ /pubmed/33785622 http://dx.doi.org/10.1128/mBio.02924-20 Text en Copyright © 2021 Stevens et al. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution 4.0 International license (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Research Article
Stevens, Alexander
Muratore, Katherine
Cui, Yanxiang
Johnson, Patricia J.
Zhou, Z. Hong
Atomic Structure of the Trichomonas vaginalis Double-Stranded RNA Virus 2
title Atomic Structure of the Trichomonas vaginalis Double-Stranded RNA Virus 2
title_full Atomic Structure of the Trichomonas vaginalis Double-Stranded RNA Virus 2
title_fullStr Atomic Structure of the Trichomonas vaginalis Double-Stranded RNA Virus 2
title_full_unstemmed Atomic Structure of the Trichomonas vaginalis Double-Stranded RNA Virus 2
title_short Atomic Structure of the Trichomonas vaginalis Double-Stranded RNA Virus 2
title_sort atomic structure of the trichomonas vaginalis double-stranded rna virus 2
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8092272/
https://www.ncbi.nlm.nih.gov/pubmed/33785622
http://dx.doi.org/10.1128/mBio.02924-20
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