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Identification of Class I HLA T Cell Control Epitopes for West Nile Virus
Authors
A Harari
A Sette
+55 more
A Wahl
AC Tan
B Custer
B Shrestha
BC Braun
BEE Martina
BF Haynes
Charles R. Rinaldo
CP McMurtrey
Curtis P. McMurtrey
D Weiskopf
Diana M. Campbell
EB Bell
F Mostashari
Fredda B. Schafer
HD Hickman
HL Robinson
HL Smith
HM Jackson
J Roelse
JW Yewdell
K Eneslatt
K Prilliman
Kenneth W. Jackson
KR Prilliman
L Rodriguez Mde
M De Filette
MG Duvall
MP Busch
MR Leach
MS Diamond
MS Diamond
MS Diamond
MS Leffell
MV Larsen
N Caccamo
P Piazza
PA Wearsch
Paolo A. Piazza
PM Kloetzel
R Buchli
Rico Buchli
RS Akondy
S Kim
Saghar Kaabinejadian
Stephen R. Vernon
Steven J. Cate
T Oliphant
Tian Wang
U Seifert
WG Glass
Wilfried Bardet
William H. Hildebrand
Y Lin
Y Wang
Publication date
10 June 2013
Publisher
'Public Library of Science (PLoS)'
Doi
Cite
View
on
PubMed
Abstract
The recent West Nile virus (WNV) outbreak in the United States underscores the importance of understanding human immune responses to this pathogen. Via the presentation of viral peptide ligands at the cell surface, class I HLA mediate the T cell recognition and killing of WNV infected cells. At this time, there are two key unknowns in regards to understanding protective T cell immunity: 1) the number of viral ligands presented by the HLA of infected cells, and 2) the distribution of T cell responses to these available HLA/viral complexes. Here, comparative mass spectroscopy was applied to determine the number of WNV peptides presented by the HLA-A*11:01 of infected cells after which T cell responses to these HLA/WNV complexes were assessed. Six viral peptides derived from capsid, NS3, NS4b, and NS5 were presented. When T cells from infected individuals were tested for reactivity to these six viral ligands, polyfunctional T cells were focused on the GTL9 WNV capsid peptide, ligands from NS3, NS4b, and NS5 were less immunogenic, and two ligands were largely inert, demonstrating that class I HLA reduce the WNV polyprotein to a handful of immune targets and that polyfunctional T cells recognize infections by zeroing in on particular HLA/WNV epitopes. Such dominant HLA/peptide epitopes are poised to drive the development of WNV vaccines that elicit protective T cells as well as providing key antigens for immunoassays that establish correlates of viral immunity. © 2013 Kaabinejadian et al
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