Dendritic cell-associated MAVS is required to control West Nile virus replication and ensuing humoral immune responses.

Mitochondrial antiviral signaling protein (MAVS) is a critical innate immune signaling protein that directs the actions of the RIG-I-like receptor (RLR) signaling pathway of RNA virus recognition and initiation of anti-viral immunity against West Nile virus (WNV). In the absence of MAVS, mice die mo...

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Main Authors: Kelsey Roe, Daniela Giordano, Lucy B Young, Kevin E Draves, Ursula Holder, Mehul S Suthar, Michael Gale, Edward A Clark
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2019-01-01
Series:PLoS ONE
Online Access:https://doi.org/10.1371/journal.pone.0218928
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spelling doaj-66befa0a707347bd8decaa0941664a8b2021-03-04T11:22:22ZengPublic Library of Science (PLoS)PLoS ONE1932-62032019-01-01146e021892810.1371/journal.pone.0218928Dendritic cell-associated MAVS is required to control West Nile virus replication and ensuing humoral immune responses.Kelsey RoeDaniela GiordanoLucy B YoungKevin E DravesUrsula HolderMehul S SutharMichael GaleEdward A ClarkMitochondrial antiviral signaling protein (MAVS) is a critical innate immune signaling protein that directs the actions of the RIG-I-like receptor (RLR) signaling pathway of RNA virus recognition and initiation of anti-viral immunity against West Nile virus (WNV). In the absence of MAVS, mice die more rapidly after infection with the pathogenic WNV-Texas (TX) strain, but also produce elevated WNV-specific IgG concomitant with increased viral burden. Here we investigated whether there was a B cell intrinsic role for MAVS during the development of protective humoral immunity following WNV infection. MAVS-/- mice survived infection from the non-pathogenic WNV-Madagascar (MAD) strain, with limited signs of disease. Compared to wildtype (WT) controls, WNV-MAD-infected MAVS-/- mice had elevated serum neutralizing antibodies, splenic germinal center B cells, plasma cells and effector T cells. We found that when rechallenged with the normally lethal WNV-TX, MAVS-/- mice previously infected with WNV-MAD were protected from disease. Thus, protective humoral and cellular immune responses can be generated in absence of MAVS. Mice with a conditional deletion of MAVS only in CD11c+ dendritic cells phenocopied MAVS whole body knockout mice in their humoral responses to WNV-MAD, displaying elevated virus titers and neutralizing antibodies. Conversely, a B cell-specific deletion of MAVS had no effect on immune responses to WNV-MAD compared to WT controls. Thus, MAVS in dendritic cells is required to control WNV replication and thereby regulate downstream humoral immune responses.https://doi.org/10.1371/journal.pone.0218928
collection DOAJ
language English
format Article
sources DOAJ
author Kelsey Roe
Daniela Giordano
Lucy B Young
Kevin E Draves
Ursula Holder
Mehul S Suthar
Michael Gale
Edward A Clark
spellingShingle Kelsey Roe
Daniela Giordano
Lucy B Young
Kevin E Draves
Ursula Holder
Mehul S Suthar
Michael Gale
Edward A Clark
Dendritic cell-associated MAVS is required to control West Nile virus replication and ensuing humoral immune responses.
PLoS ONE
author_facet Kelsey Roe
Daniela Giordano
Lucy B Young
Kevin E Draves
Ursula Holder
Mehul S Suthar
Michael Gale
Edward A Clark
author_sort Kelsey Roe
title Dendritic cell-associated MAVS is required to control West Nile virus replication and ensuing humoral immune responses.
title_short Dendritic cell-associated MAVS is required to control West Nile virus replication and ensuing humoral immune responses.
title_full Dendritic cell-associated MAVS is required to control West Nile virus replication and ensuing humoral immune responses.
title_fullStr Dendritic cell-associated MAVS is required to control West Nile virus replication and ensuing humoral immune responses.
title_full_unstemmed Dendritic cell-associated MAVS is required to control West Nile virus replication and ensuing humoral immune responses.
title_sort dendritic cell-associated mavs is required to control west nile virus replication and ensuing humoral immune responses.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2019-01-01
description Mitochondrial antiviral signaling protein (MAVS) is a critical innate immune signaling protein that directs the actions of the RIG-I-like receptor (RLR) signaling pathway of RNA virus recognition and initiation of anti-viral immunity against West Nile virus (WNV). In the absence of MAVS, mice die more rapidly after infection with the pathogenic WNV-Texas (TX) strain, but also produce elevated WNV-specific IgG concomitant with increased viral burden. Here we investigated whether there was a B cell intrinsic role for MAVS during the development of protective humoral immunity following WNV infection. MAVS-/- mice survived infection from the non-pathogenic WNV-Madagascar (MAD) strain, with limited signs of disease. Compared to wildtype (WT) controls, WNV-MAD-infected MAVS-/- mice had elevated serum neutralizing antibodies, splenic germinal center B cells, plasma cells and effector T cells. We found that when rechallenged with the normally lethal WNV-TX, MAVS-/- mice previously infected with WNV-MAD were protected from disease. Thus, protective humoral and cellular immune responses can be generated in absence of MAVS. Mice with a conditional deletion of MAVS only in CD11c+ dendritic cells phenocopied MAVS whole body knockout mice in their humoral responses to WNV-MAD, displaying elevated virus titers and neutralizing antibodies. Conversely, a B cell-specific deletion of MAVS had no effect on immune responses to WNV-MAD compared to WT controls. Thus, MAVS in dendritic cells is required to control WNV replication and thereby regulate downstream humoral immune responses.
url https://doi.org/10.1371/journal.pone.0218928
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