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Kollmorgen, J.

Publications and source records attributed to Kollmorgen, J..

2 recordsLinked to original sources

Conserved T cell receptor usage underpins recognition of CD1c presenting a mycobacterial lipid

The mechanism by which T cell receptors (TCR) recognise mycobacterial lipids presented by CD1 family members not well understood. We used CD1c tetramers loaded with the mycobacterial phosphomycoketide (PM) or mannosyl-PM (MPM) to isolate T cells ex vivo in healthy blood donors and in individuals from a tuberculosis (TB)-endemic region of South Africa, with higher frequencies observed in individuals from the TB-endemic region. High throughput analysis of >200 paired CD1c-mycoketide tetramer+ {beta}TCRs identified a conserved TCR motif, encoded by TRBV4-1 or TRBV7-9 variable region genes in greater than half of TCRs sequenced. A cryo-EM structure of a TRBV7-9+ TCR in complex with CD1c-PM demonstrated that the TCR bound to the F side of CD1c, directly contacting the phospholipid antigen and F-portal residues. Analysis of multiple T cell clones interacting with CD1c mutants suggested that this TCR docking mode is representative of the larger TRBV7-9+ T cell population. Collectively, this study provides insight into mycobacterial lipid-antigen recognition by CD1c-restricted T cells. SummaryCao and Soliman et al study CD1c-restricted human T cells that recognize mycobacterial phosphomycoketide lipids, where they are shown to be more frequent in blood a TB-endemic region. The authors describe a strong TCR-{beta} repertoire bias and use cryoEM to provide a high-resolution structure of an archetypal TCR engaging CD1c in complex with a mycobacterial lipid.

immunology↗

CD1a-Mediated Presentation of Canonical Microbial Peptides to T Cells

Langerhans cells express the nonpolymorphic antigen-presenting molecule CD1a, positioning them as contributors to host immunity against Mycobacterium leprae in human leprosy. CD1a was originally shown to present non-canonical lipopeptide antigens such as dideoxymycobactin and chemically diverse hydrophobic ligands. Here, we generated CD4 T cell lines from leprosy lesions that recognized M. leprae in a CD1a-restricted manner. Unexpectedly, antigen recognition was protease-sensitive, prompting biochemical purification that identified two microbial protein antigens: LppX, a 25-kDa lipoglycoprotein, and Ag85A, a 30-kDa secreted protein with no known lipid modification. Recombinant proteins activated the corresponding T cell lines in a CD1a-dependent manner. Epitope mapping identified 12-mer peptides that fully reconstituted antigenicity, were conserved between M. leprae and M. tuberculosis, and elicited robust, dose-dependent IFN-{gamma} production and T cell proliferation, establishing that DNA-encoded, ribosomally translated peptides serve as CD1a-restricted cognate antigens. Biochemical analyses showed peptide binding to CD1a, supported by isoelectric focusing and surface plasmon resonance (KD [~]75 M for Ag85A). CD1a-peptide tetramers specifically stained cognate T cells, soluble CD1a was sufficient to present peptide antigen, and transfer of the LppX-specific TCR into naive T cells restored antigen responsiveness. Using CD1a-peptide tetramers, we identified antigen-specific T cells enriched in patients undergoing reversal reactions compared with patients with lepromatous leprosy and healthy donors. The CD1a-restricted T cell lines secreted IFN-{gamma} and IL-26, cytokines with established antimicrobial activity. Together, these findings demonstrate that CD1a can present canonical microbial peptides as part of a cell-mediated immune response in leprosy, extending the known spectrum of CD1a ligands. Because CD1a is nonpolymorphic and presents antigens to antimicrobial T cells, CD1a-peptide complexes may provide a broadly applicable platform for studying, detecting, and potentially targeting mycobacterial immunity.

immunology↗