Immunity to infections with measles virus (MV) can involve vigorous human leukocyte antigen (HLA) class I-restricted CD8+ cytotoxic T cell (CTL) responses. MV, albeit regarded monotypic, is known to undergo molecular evolution across its RNA genome. To address which regions of the MV proteome are eligible for recognition by CD8+ CTLs and how different HLA class I loci contribute to the epitope display, we interrogated the naturally processed and presented MV peptidome extracted from cell lines expressing in total a broad panel of 16 different common HLA-A, -B, and -C molecules. The repertoire and abundance of MV peptides were bona fide identified by nanoHPLC-MS/MS. Eighty-nine MV peptides were discovered and assignment to an HLA-A, -B, or -...
AbstractThis is the first report of the direct identification of a HLA-DRB1*03 measles-derived pepti...
T cell epitopes of the measles virus (MV) nucleoprotein were studied by synthesizing overlapping 20 ...
Multiple HLA class I alleles can bind peptides with common sequence motifs due to structural similar...
Immunity to infections with measles virus (MV) can involve vigorous human leukocyte antigen (HLA) cl...
Immunity to infections with measles virus (MV) can involve vigorous human leukocyte antigen (HLA) cl...
Human Leukocyte Antigen (HLA) class I is a group of genes located on human chromosome 6 which play a...
T cells are key mediators of inflammatory processes that can be activated by pathogens and vaccines....
AbstractThis is the first report of the direct identification of a HLA-DRB1*03 measles-derived pepti...
International audienceThe measles virus (MV) is serologically monotypic. Life-long immunity is confe...
The transmembrane fusion (F) glycoprotein of measles virus is an important target antigen of human H...
<div><p>The measles virus (MV) is serologically monotypic. Life-long immunity is conferred by a sing...
Natural infection and vaccination with a live-attenuated measles virus (MV) induce CD8+ T-cell-media...
Natural infection and vaccination with a live-attenuated measles virus (MV) induce CD8+ T-cell-media...
CD8+ T cells, via their specific T-cell receptor (TCR), target infected cells when recognizing patho...
Natural infection and vaccination with a live-attenuated measles virus (MV) induce CD8+ T-cell-media...
AbstractThis is the first report of the direct identification of a HLA-DRB1*03 measles-derived pepti...
T cell epitopes of the measles virus (MV) nucleoprotein were studied by synthesizing overlapping 20 ...
Multiple HLA class I alleles can bind peptides with common sequence motifs due to structural similar...
Immunity to infections with measles virus (MV) can involve vigorous human leukocyte antigen (HLA) cl...
Immunity to infections with measles virus (MV) can involve vigorous human leukocyte antigen (HLA) cl...
Human Leukocyte Antigen (HLA) class I is a group of genes located on human chromosome 6 which play a...
T cells are key mediators of inflammatory processes that can be activated by pathogens and vaccines....
AbstractThis is the first report of the direct identification of a HLA-DRB1*03 measles-derived pepti...
International audienceThe measles virus (MV) is serologically monotypic. Life-long immunity is confe...
The transmembrane fusion (F) glycoprotein of measles virus is an important target antigen of human H...
<div><p>The measles virus (MV) is serologically monotypic. Life-long immunity is conferred by a sing...
Natural infection and vaccination with a live-attenuated measles virus (MV) induce CD8+ T-cell-media...
Natural infection and vaccination with a live-attenuated measles virus (MV) induce CD8+ T-cell-media...
CD8+ T cells, via their specific T-cell receptor (TCR), target infected cells when recognizing patho...
Natural infection and vaccination with a live-attenuated measles virus (MV) induce CD8+ T-cell-media...
AbstractThis is the first report of the direct identification of a HLA-DRB1*03 measles-derived pepti...
T cell epitopes of the measles virus (MV) nucleoprotein were studied by synthesizing overlapping 20 ...
Multiple HLA class I alleles can bind peptides with common sequence motifs due to structural similar...