Cargando…
A VP1 mutation acquired during an enterovirus 71 disseminated infection confers heparan sulfate binding ability and modulates ex vivo tropism
Enterovirus 71 (EV71) causes hand, foot and mouth disease, a mild and self-limited illness that is sometimes associated with severe neurological complications. EV71 neurotropic determinants remain ill-defined to date. We previously identified a mutation in the VP1 capsid protein (L97R) that was acqu...
Autores principales: | , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Public Library of Science
2018
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6093697/ https://www.ncbi.nlm.nih.gov/pubmed/30075025 http://dx.doi.org/10.1371/journal.ppat.1007190 |
_version_ | 1783347715576430592 |
---|---|
author | Tseligka, Eirini D. Sobo, Komla Stoppini, Luc Cagno, Valeria Abdul, Fabien Piuz, Isabelle Meylan, Pascal Huang, Song Constant, Samuel Tapparel, Caroline |
author_facet | Tseligka, Eirini D. Sobo, Komla Stoppini, Luc Cagno, Valeria Abdul, Fabien Piuz, Isabelle Meylan, Pascal Huang, Song Constant, Samuel Tapparel, Caroline |
author_sort | Tseligka, Eirini D. |
collection | PubMed |
description | Enterovirus 71 (EV71) causes hand, foot and mouth disease, a mild and self-limited illness that is sometimes associated with severe neurological complications. EV71 neurotropic determinants remain ill-defined to date. We previously identified a mutation in the VP1 capsid protein (L97R) that was acquired over the course of a disseminated infection in an immunocompromised host. The mutation was absent in the respiratory tract but was present in the gut (as a mixed population) and in blood and cerebrospinal fluid (as a dominant species). In this study, we demonstrated that this mutation does not alter the dependence of EV71 on the human scavenger receptor class B2 (SCARB2), while it enables the virus to bind to the heparan sulfate (HS) attachment receptor and modifies viral tropism in cell lines and in respiratory, intestinal and neural tissues. Variants with VP1(97L) or VP1(97R) were able to replicate to high levels in intestinal and neural tissues and, to a lesser extent, in respiratory tissues, but their preferred entry site (from the luminal or basal tissue side) differed in respiratory and intestinal tissues and correlated with HS expression levels. These data account for the viral populations sequenced from the patient’s respiratory and intestinal samples and suggest that improved dissemination, resulting from an acquired ability to bind HS, rather than specific neurotropism determinants, enabled the virus to reach and infect the central nervous system. Finally, we showed that iota-carrageenan, a highly sulfated polysaccharide, efficiently blocks the replication of HS-dependent variants in cells and 2D neural cultures. Overall, the results of this study emphasize the importance of HS binding in EV71 pathogenesis and open new avenues for the development of antiviral molecules that may prevent this virus’s dissemination. |
format | Online Article Text |
id | pubmed-6093697 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2018 |
publisher | Public Library of Science |
record_format | MEDLINE/PubMed |
spelling | pubmed-60936972018-08-30 A VP1 mutation acquired during an enterovirus 71 disseminated infection confers heparan sulfate binding ability and modulates ex vivo tropism Tseligka, Eirini D. Sobo, Komla Stoppini, Luc Cagno, Valeria Abdul, Fabien Piuz, Isabelle Meylan, Pascal Huang, Song Constant, Samuel Tapparel, Caroline PLoS Pathog Research Article Enterovirus 71 (EV71) causes hand, foot and mouth disease, a mild and self-limited illness that is sometimes associated with severe neurological complications. EV71 neurotropic determinants remain ill-defined to date. We previously identified a mutation in the VP1 capsid protein (L97R) that was acquired over the course of a disseminated infection in an immunocompromised host. The mutation was absent in the respiratory tract but was present in the gut (as a mixed population) and in blood and cerebrospinal fluid (as a dominant species). In this study, we demonstrated that this mutation does not alter the dependence of EV71 on the human scavenger receptor class B2 (SCARB2), while it enables the virus to bind to the heparan sulfate (HS) attachment receptor and modifies viral tropism in cell lines and in respiratory, intestinal and neural tissues. Variants with VP1(97L) or VP1(97R) were able to replicate to high levels in intestinal and neural tissues and, to a lesser extent, in respiratory tissues, but their preferred entry site (from the luminal or basal tissue side) differed in respiratory and intestinal tissues and correlated with HS expression levels. These data account for the viral populations sequenced from the patient’s respiratory and intestinal samples and suggest that improved dissemination, resulting from an acquired ability to bind HS, rather than specific neurotropism determinants, enabled the virus to reach and infect the central nervous system. Finally, we showed that iota-carrageenan, a highly sulfated polysaccharide, efficiently blocks the replication of HS-dependent variants in cells and 2D neural cultures. Overall, the results of this study emphasize the importance of HS binding in EV71 pathogenesis and open new avenues for the development of antiviral molecules that may prevent this virus’s dissemination. Public Library of Science 2018-08-03 /pmc/articles/PMC6093697/ /pubmed/30075025 http://dx.doi.org/10.1371/journal.ppat.1007190 Text en © 2018 Tseligka 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 (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited. |
spellingShingle | Research Article Tseligka, Eirini D. Sobo, Komla Stoppini, Luc Cagno, Valeria Abdul, Fabien Piuz, Isabelle Meylan, Pascal Huang, Song Constant, Samuel Tapparel, Caroline A VP1 mutation acquired during an enterovirus 71 disseminated infection confers heparan sulfate binding ability and modulates ex vivo tropism |
title | A VP1 mutation acquired during an enterovirus 71 disseminated infection confers heparan sulfate binding ability and modulates ex vivo tropism |
title_full | A VP1 mutation acquired during an enterovirus 71 disseminated infection confers heparan sulfate binding ability and modulates ex vivo tropism |
title_fullStr | A VP1 mutation acquired during an enterovirus 71 disseminated infection confers heparan sulfate binding ability and modulates ex vivo tropism |
title_full_unstemmed | A VP1 mutation acquired during an enterovirus 71 disseminated infection confers heparan sulfate binding ability and modulates ex vivo tropism |
title_short | A VP1 mutation acquired during an enterovirus 71 disseminated infection confers heparan sulfate binding ability and modulates ex vivo tropism |
title_sort | vp1 mutation acquired during an enterovirus 71 disseminated infection confers heparan sulfate binding ability and modulates ex vivo tropism |
topic | Research Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6093697/ https://www.ncbi.nlm.nih.gov/pubmed/30075025 http://dx.doi.org/10.1371/journal.ppat.1007190 |
work_keys_str_mv | AT tseligkaeirinid avp1mutationacquiredduringanenterovirus71disseminatedinfectionconfersheparansulfatebindingabilityandmodulatesexvivotropism AT sobokomla avp1mutationacquiredduringanenterovirus71disseminatedinfectionconfersheparansulfatebindingabilityandmodulatesexvivotropism AT stoppiniluc avp1mutationacquiredduringanenterovirus71disseminatedinfectionconfersheparansulfatebindingabilityandmodulatesexvivotropism AT cagnovaleria avp1mutationacquiredduringanenterovirus71disseminatedinfectionconfersheparansulfatebindingabilityandmodulatesexvivotropism AT abdulfabien avp1mutationacquiredduringanenterovirus71disseminatedinfectionconfersheparansulfatebindingabilityandmodulatesexvivotropism AT piuzisabelle avp1mutationacquiredduringanenterovirus71disseminatedinfectionconfersheparansulfatebindingabilityandmodulatesexvivotropism AT meylanpascal avp1mutationacquiredduringanenterovirus71disseminatedinfectionconfersheparansulfatebindingabilityandmodulatesexvivotropism AT huangsong avp1mutationacquiredduringanenterovirus71disseminatedinfectionconfersheparansulfatebindingabilityandmodulatesexvivotropism AT constantsamuel avp1mutationacquiredduringanenterovirus71disseminatedinfectionconfersheparansulfatebindingabilityandmodulatesexvivotropism AT tapparelcaroline avp1mutationacquiredduringanenterovirus71disseminatedinfectionconfersheparansulfatebindingabilityandmodulatesexvivotropism AT tseligkaeirinid vp1mutationacquiredduringanenterovirus71disseminatedinfectionconfersheparansulfatebindingabilityandmodulatesexvivotropism AT sobokomla vp1mutationacquiredduringanenterovirus71disseminatedinfectionconfersheparansulfatebindingabilityandmodulatesexvivotropism AT stoppiniluc vp1mutationacquiredduringanenterovirus71disseminatedinfectionconfersheparansulfatebindingabilityandmodulatesexvivotropism AT cagnovaleria vp1mutationacquiredduringanenterovirus71disseminatedinfectionconfersheparansulfatebindingabilityandmodulatesexvivotropism AT abdulfabien vp1mutationacquiredduringanenterovirus71disseminatedinfectionconfersheparansulfatebindingabilityandmodulatesexvivotropism AT piuzisabelle vp1mutationacquiredduringanenterovirus71disseminatedinfectionconfersheparansulfatebindingabilityandmodulatesexvivotropism AT meylanpascal vp1mutationacquiredduringanenterovirus71disseminatedinfectionconfersheparansulfatebindingabilityandmodulatesexvivotropism AT huangsong vp1mutationacquiredduringanenterovirus71disseminatedinfectionconfersheparansulfatebindingabilityandmodulatesexvivotropism AT constantsamuel vp1mutationacquiredduringanenterovirus71disseminatedinfectionconfersheparansulfatebindingabilityandmodulatesexvivotropism AT tapparelcaroline vp1mutationacquiredduringanenterovirus71disseminatedinfectionconfersheparansulfatebindingabilityandmodulatesexvivotropism |