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H1N1pdm09 Influenza Virus and Its Descendants Lack Extra-epitopic Amino Acid Residues Associated With Reduced Recognition by M158-66-Specific CD8+ T Cells
by
Koopmans, Marion P G
, Pronk, Mark R
, Fouchier, Ron A M
, Rimmelzwaan, Guus F
, Sagong, Kyung A
, Bestebroer, Theo M
, Spronken, Monique I
, van de Sandt, Carolien E
in
Major and Brief Reports
2018
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H1N1pdm09 Influenza Virus and Its Descendants Lack Extra-epitopic Amino Acid Residues Associated With Reduced Recognition by M158-66-Specific CD8+ T Cells
by
Koopmans, Marion P G
, Pronk, Mark R
, Fouchier, Ron A M
, Rimmelzwaan, Guus F
, Sagong, Kyung A
, Bestebroer, Theo M
, Spronken, Monique I
, van de Sandt, Carolien E
in
Major and Brief Reports
2018
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Do you wish to request the book?
H1N1pdm09 Influenza Virus and Its Descendants Lack Extra-epitopic Amino Acid Residues Associated With Reduced Recognition by M158-66-Specific CD8+ T Cells
by
Koopmans, Marion P G
, Pronk, Mark R
, Fouchier, Ron A M
, Rimmelzwaan, Guus F
, Sagong, Kyung A
, Bestebroer, Theo M
, Spronken, Monique I
, van de Sandt, Carolien E
in
Major and Brief Reports
2018
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H1N1pdm09 Influenza Virus and Its Descendants Lack Extra-epitopic Amino Acid Residues Associated With Reduced Recognition by M158-66-Specific CD8+ T Cells
Journal Article
H1N1pdm09 Influenza Virus and Its Descendants Lack Extra-epitopic Amino Acid Residues Associated With Reduced Recognition by M158-66-Specific CD8+ T Cells
2018
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Overview
Extra-epitopic amino acid residues affect recognition of human influenza A viruses (IAVs) by CD8+ T-lymphocytes (CTLs) specific for the highly conserved HLA-A*0201 restricted M158-66 epitope located in the matrix 1 (M1) protein. These residues are absent in the M1 protein of the 2009-pandemic IAV (H1N1pdm09). Consequently, stimulation with M1 protein of H1N1pdm09 IAV resulted in stronger activation and lytic activity of M158-66-specific CTLs than stimulation with seasonal H3N2 IAVs. During >6 years of circulation in the human population, descendants of the H1N1pdm09 virus had accumulated 4 other amino acid substitutions. However, these did not affect M158-66-specific CTL activation.
Publisher
Oxford University Press
Subject
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