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Wassie, L.

Publications and source records attributed to Wassie, L..

2 recordsLinked to original sources

Immunopeptidomics informs discovery and delivery of Mycobacterium tuberculosis MHC-II antigens for vaccine design

No currently licensed vaccine reliably prevents pulmonary tuberculosis (TB), a leading cause of infectious disease mortality. Developing effective new vaccines will require identifying which of the roughly 4000 proteins in the Mycobacterium tuberculosis (Mtb) proteome are presented on MHC class II (MHC-II) by infected human phagocytes and can be recognized by CD4+ T cells to mediate protective immunity. Vaccines must also elicit T cell responses recognizing the same peptide-MHC complexes presented by infected cells, and successful presentation of target human MHC-II peptides is currently challenging to evaluate and optimize. Here, we define antigenic targets for TB vaccine development by using mass spectrometry (MS) for proteome-wide discovery of Mtb epitopes presented on MHC-II by infected human cells. We next iteratively design and evaluate candidate mRNA vaccine immunogens, revealing design principles that enhance presentation of target MHC-II peptides. Our results will inform the development of new TB vaccine candidates.

microbiology↗

Rare Variable M. tuberculosis Antigens induce predominant Th17 responses in human infection

CD4 T cells are essential for immunity to M. tuberculosis (Mtb), and emerging evidence indicates that IL-17-producing Th17 cells contribute to immunity to Mtb. While identifying protective T cell effector functions is important for TB vaccine design, T cell antigen specificity is also likely to be important. To identify antigens that induce protective immunity, we reasoned that as in other pathogens, effective immune recognition drives sequence diversity in individual Mtb antigens. We previously identified Mtb genes under evolutionary diversifying selection pressure whose products we term Rare Variable Mtb Antigens (RVMA). Here, in two distinct human cohorts with recent exposure to TB, we found that RVMA preferentially induce CD4 T cells that express RoR{gamma}t and produce IL-17, in contrast to classical Mtb antigens that induce T cells that produce IFN{gamma}. Our results suggest that RVMA can be valuable antigens in vaccines for those already infected with Mtb to amplify existing antigen-specific Th17 responses to prevent TB disease.

immunology↗