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Insights into herpesvirus assembly from the structure of the pUL7:pUL51 complex

Herpesviruses acquire their membrane envelopes in the cytoplasm of infected cells via a molecular mechanism that remains unclear. Herpes simplex virus (HSV)−1 proteins pUL7 and pUL51 form a complex required for efficient virus envelopment. We show that interaction between homologues of pUL7 and pUL5...

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Autores principales: Butt, Benjamin G, Owen, Danielle J, Jeffries, Cy M, Ivanova, Lyudmila, Hill, Chris H, Houghton, Jack W, Ahmed, Md Firoz, Antrobus, Robin, Svergun, Dmitri I, Welch, John J, Crump, Colin M, Graham, Stephen C
Formato: Online Artículo Texto
Lenguaje:English
Publicado: eLife Sciences Publications, Ltd 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7289601/
https://www.ncbi.nlm.nih.gov/pubmed/32391791
http://dx.doi.org/10.7554/eLife.53789
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author Butt, Benjamin G
Owen, Danielle J
Jeffries, Cy M
Ivanova, Lyudmila
Hill, Chris H
Houghton, Jack W
Ahmed, Md Firoz
Antrobus, Robin
Svergun, Dmitri I
Welch, John J
Crump, Colin M
Graham, Stephen C
author_facet Butt, Benjamin G
Owen, Danielle J
Jeffries, Cy M
Ivanova, Lyudmila
Hill, Chris H
Houghton, Jack W
Ahmed, Md Firoz
Antrobus, Robin
Svergun, Dmitri I
Welch, John J
Crump, Colin M
Graham, Stephen C
author_sort Butt, Benjamin G
collection PubMed
description Herpesviruses acquire their membrane envelopes in the cytoplasm of infected cells via a molecular mechanism that remains unclear. Herpes simplex virus (HSV)−1 proteins pUL7 and pUL51 form a complex required for efficient virus envelopment. We show that interaction between homologues of pUL7 and pUL51 is conserved across human herpesviruses, as is their association with trans-Golgi membranes. We characterized the HSV-1 pUL7:pUL51 complex by solution scattering and chemical crosslinking, revealing a 1:2 complex that can form higher-order oligomers in solution, and we solved the crystal structure of the core pUL7:pUL51 heterodimer. While pUL7 adopts a previously-unseen compact fold, the helix-turn-helix conformation of pUL51 resembles the cellular endosomal complex required for transport (ESCRT)-III component CHMP4B and pUL51 forms ESCRT-III–like filaments, suggesting a direct role for pUL51 in promoting membrane scission during virus assembly. Our results provide a structural framework for understanding the role of the conserved pUL7:pUL51 complex in herpesvirus assembly.
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spelling pubmed-72896012020-06-15 Insights into herpesvirus assembly from the structure of the pUL7:pUL51 complex Butt, Benjamin G Owen, Danielle J Jeffries, Cy M Ivanova, Lyudmila Hill, Chris H Houghton, Jack W Ahmed, Md Firoz Antrobus, Robin Svergun, Dmitri I Welch, John J Crump, Colin M Graham, Stephen C eLife Microbiology and Infectious Disease Herpesviruses acquire their membrane envelopes in the cytoplasm of infected cells via a molecular mechanism that remains unclear. Herpes simplex virus (HSV)−1 proteins pUL7 and pUL51 form a complex required for efficient virus envelopment. We show that interaction between homologues of pUL7 and pUL51 is conserved across human herpesviruses, as is their association with trans-Golgi membranes. We characterized the HSV-1 pUL7:pUL51 complex by solution scattering and chemical crosslinking, revealing a 1:2 complex that can form higher-order oligomers in solution, and we solved the crystal structure of the core pUL7:pUL51 heterodimer. While pUL7 adopts a previously-unseen compact fold, the helix-turn-helix conformation of pUL51 resembles the cellular endosomal complex required for transport (ESCRT)-III component CHMP4B and pUL51 forms ESCRT-III–like filaments, suggesting a direct role for pUL51 in promoting membrane scission during virus assembly. Our results provide a structural framework for understanding the role of the conserved pUL7:pUL51 complex in herpesvirus assembly. eLife Sciences Publications, Ltd 2020-05-11 /pmc/articles/PMC7289601/ /pubmed/32391791 http://dx.doi.org/10.7554/eLife.53789 Text en © 2020, Butt et al http://creativecommons.org/licenses/by/4.0/ http://creativecommons.org/licenses/by/4.0/This article is distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use and redistribution provided that the original author and source are credited.
spellingShingle Microbiology and Infectious Disease
Butt, Benjamin G
Owen, Danielle J
Jeffries, Cy M
Ivanova, Lyudmila
Hill, Chris H
Houghton, Jack W
Ahmed, Md Firoz
Antrobus, Robin
Svergun, Dmitri I
Welch, John J
Crump, Colin M
Graham, Stephen C
Insights into herpesvirus assembly from the structure of the pUL7:pUL51 complex
title Insights into herpesvirus assembly from the structure of the pUL7:pUL51 complex
title_full Insights into herpesvirus assembly from the structure of the pUL7:pUL51 complex
title_fullStr Insights into herpesvirus assembly from the structure of the pUL7:pUL51 complex
title_full_unstemmed Insights into herpesvirus assembly from the structure of the pUL7:pUL51 complex
title_short Insights into herpesvirus assembly from the structure of the pUL7:pUL51 complex
title_sort insights into herpesvirus assembly from the structure of the pul7:pul51 complex
topic Microbiology and Infectious Disease
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7289601/
https://www.ncbi.nlm.nih.gov/pubmed/32391791
http://dx.doi.org/10.7554/eLife.53789
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