Defensin-driven viral evolution.
Enteric alpha-defensins are potent effectors of innate immunity that are abundantly expressed in the small intestine. Certain enteric bacteria and viruses are resistant to defensins and even appropriate them to enhance infection despite neutralization of closely related microbes. We therefore hypoth...
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Series: | PLoS Pathogens |
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doaj-34c75e27d60c4474ac4664893017405b2021-04-21T17:56:25ZengPublic Library of Science (PLoS)PLoS Pathogens1553-73661553-73742020-11-011611e100901810.1371/journal.ppat.1009018Defensin-driven viral evolution.Karina DiazCiara T HuYoungmee SulBeth A BrommeNicolle D MyersKsenia V SkorohodovaAnshu P GounderJason G SmithEnteric alpha-defensins are potent effectors of innate immunity that are abundantly expressed in the small intestine. Certain enteric bacteria and viruses are resistant to defensins and even appropriate them to enhance infection despite neutralization of closely related microbes. We therefore hypothesized that defensins impose selective pressure during fecal-oral transmission. Upon passaging a defensin-sensitive serotype of adenovirus in the presence of a human defensin, mutations in the major capsid protein hexon accumulated. In contrast, prior studies identified the vertex proteins as important determinants of defensin antiviral activity. Infection and biochemical assays suggest that a balance between increased cell binding and a downstream block in intracellular trafficking mediated by defensin interactions with all of the major capsid proteins dictates the outcome of infection. These results extensively revise our understanding of the interplay between defensins and non-enveloped viruses. Furthermore, they provide a feasible rationale for defensins shaping viral evolution, resulting in differences in infection phenotypes of closely related viruses.https://doi.org/10.1371/journal.ppat.1009018 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Karina Diaz Ciara T Hu Youngmee Sul Beth A Bromme Nicolle D Myers Ksenia V Skorohodova Anshu P Gounder Jason G Smith |
spellingShingle |
Karina Diaz Ciara T Hu Youngmee Sul Beth A Bromme Nicolle D Myers Ksenia V Skorohodova Anshu P Gounder Jason G Smith Defensin-driven viral evolution. PLoS Pathogens |
author_facet |
Karina Diaz Ciara T Hu Youngmee Sul Beth A Bromme Nicolle D Myers Ksenia V Skorohodova Anshu P Gounder Jason G Smith |
author_sort |
Karina Diaz |
title |
Defensin-driven viral evolution. |
title_short |
Defensin-driven viral evolution. |
title_full |
Defensin-driven viral evolution. |
title_fullStr |
Defensin-driven viral evolution. |
title_full_unstemmed |
Defensin-driven viral evolution. |
title_sort |
defensin-driven viral evolution. |
publisher |
Public Library of Science (PLoS) |
series |
PLoS Pathogens |
issn |
1553-7366 1553-7374 |
publishDate |
2020-11-01 |
description |
Enteric alpha-defensins are potent effectors of innate immunity that are abundantly expressed in the small intestine. Certain enteric bacteria and viruses are resistant to defensins and even appropriate them to enhance infection despite neutralization of closely related microbes. We therefore hypothesized that defensins impose selective pressure during fecal-oral transmission. Upon passaging a defensin-sensitive serotype of adenovirus in the presence of a human defensin, mutations in the major capsid protein hexon accumulated. In contrast, prior studies identified the vertex proteins as important determinants of defensin antiviral activity. Infection and biochemical assays suggest that a balance between increased cell binding and a downstream block in intracellular trafficking mediated by defensin interactions with all of the major capsid proteins dictates the outcome of infection. These results extensively revise our understanding of the interplay between defensins and non-enveloped viruses. Furthermore, they provide a feasible rationale for defensins shaping viral evolution, resulting in differences in infection phenotypes of closely related viruses. |
url |
https://doi.org/10.1371/journal.ppat.1009018 |
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