Type III IFN receptor expression and functional characterisation in the pteropid bat, Pteropus alecto.
Bats are rich reservoir hosts for a variety of viruses, many of which are capable of spillover to other susceptible mammals with lethal consequences. The ability of bats to remain asymptomatic to viral infection may be due to the rapid control of viral replication very early in the immune response t...
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doaj-3d1f8b40b53f4018a3b12e76159bbcdd2020-11-25T02:33:54ZengPublic Library of Science (PLoS)PLoS ONE1932-62032011-01-0169e2538510.1371/journal.pone.0025385Type III IFN receptor expression and functional characterisation in the pteropid bat, Pteropus alecto.Peng ZhouChris CowledGlenn A MarshZhengli ShiLin-Fa WangMichelle L BakerBats are rich reservoir hosts for a variety of viruses, many of which are capable of spillover to other susceptible mammals with lethal consequences. The ability of bats to remain asymptomatic to viral infection may be due to the rapid control of viral replication very early in the immune response through innate antiviral mechanisms. Type I and III interferons (IFNs) represent the first line of defence against viral infection in mammals, with both families of IFNs present in pteropid bats. To obtain further insight into the type III IFN system in bats, we describe the characterization of the type III IFN receptor (IFNλR) in the black flying fox, P. alecto with the characterization of IFNλR1 and IL10R2 genes that make up the type III IFN receptor complex. The bat IFNλR complex has a wide tissue distribution and at the cellular level, both epithelial and immune cells are responsive to IFN-λ treatment. Furthermore, we demonstrate that the bat IFNλR1 chain acts as a functional receptor. To our knowledge, this report represents the first description of an IFN receptor in any species of bat. The responsiveness of bat cells to IFN-λ support a role for the type III IFN system by epithelial and immune cells in bats.http://europepmc.org/articles/PMC3181264?pdf=render |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Peng Zhou Chris Cowled Glenn A Marsh Zhengli Shi Lin-Fa Wang Michelle L Baker |
spellingShingle |
Peng Zhou Chris Cowled Glenn A Marsh Zhengli Shi Lin-Fa Wang Michelle L Baker Type III IFN receptor expression and functional characterisation in the pteropid bat, Pteropus alecto. PLoS ONE |
author_facet |
Peng Zhou Chris Cowled Glenn A Marsh Zhengli Shi Lin-Fa Wang Michelle L Baker |
author_sort |
Peng Zhou |
title |
Type III IFN receptor expression and functional characterisation in the pteropid bat, Pteropus alecto. |
title_short |
Type III IFN receptor expression and functional characterisation in the pteropid bat, Pteropus alecto. |
title_full |
Type III IFN receptor expression and functional characterisation in the pteropid bat, Pteropus alecto. |
title_fullStr |
Type III IFN receptor expression and functional characterisation in the pteropid bat, Pteropus alecto. |
title_full_unstemmed |
Type III IFN receptor expression and functional characterisation in the pteropid bat, Pteropus alecto. |
title_sort |
type iii ifn receptor expression and functional characterisation in the pteropid bat, pteropus alecto. |
publisher |
Public Library of Science (PLoS) |
series |
PLoS ONE |
issn |
1932-6203 |
publishDate |
2011-01-01 |
description |
Bats are rich reservoir hosts for a variety of viruses, many of which are capable of spillover to other susceptible mammals with lethal consequences. The ability of bats to remain asymptomatic to viral infection may be due to the rapid control of viral replication very early in the immune response through innate antiviral mechanisms. Type I and III interferons (IFNs) represent the first line of defence against viral infection in mammals, with both families of IFNs present in pteropid bats. To obtain further insight into the type III IFN system in bats, we describe the characterization of the type III IFN receptor (IFNλR) in the black flying fox, P. alecto with the characterization of IFNλR1 and IL10R2 genes that make up the type III IFN receptor complex. The bat IFNλR complex has a wide tissue distribution and at the cellular level, both epithelial and immune cells are responsive to IFN-λ treatment. Furthermore, we demonstrate that the bat IFNλR1 chain acts as a functional receptor. To our knowledge, this report represents the first description of an IFN receptor in any species of bat. The responsiveness of bat cells to IFN-λ support a role for the type III IFN system by epithelial and immune cells in bats. |
url |
http://europepmc.org/articles/PMC3181264?pdf=render |
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