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1-4 of 4
Scott Southwood
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Journal Articles
Shabnam Tangri, Glenn Y. Ishioka, Xiuqing Huang, John Sidney, Scott Southwood, John Fikes, Alessandro Sette
Journal:
Journal of Experimental Medicine
Journal of Experimental Medicine (2001) 194 (6): 833–846.
Published: 17 September 2001
Abstract
Certain peptide analogs that carry substitutions at residues other than the main major histocompatibility complex anchors and are surprisingly much more antigenic than wild-type peptide (heteroclitic analogs). To date, it was unknown how frequently wild-type epitopes could be modified to obtain heteroclitic activity. In this study, we analyzed a large panel of analogs of two different human histocompatibility leukocyte antigen (HLA)-A2.1–restricted epitopes and found that heteroclitic analogs were associated with higher magnitude responses and increased (up to 10 7 -fold) sensitivity to antigen, and corresponded to conservative or semiconservative substitutions at odd-numbered positions in the middle of the peptide (positions 3, 5, or 7). These findings were validated by performing additional immunogenicity studies in murine and human systems with four additional epitopes. The biological relevance of heteroclitic analogs was underlined when predicted analogs of the p53.261 epitope was shown to induce cytotoxic T lymphocytes (CTLs) that recognize low concentrations of peptide (high avidity) in vivo and demonstrate in vitro antitumor recognition. Finally, in vitro immunization of human peripheral blood mononuclear cells with two heteroclitic analogs resulted in recruitment of more numerous CTLs which were associated with increased antigen sensitivity. In conclusion, heteroclitic analogs were identified in each of the six cases studied and structural features were defined which allow identification of such analogs. The strong CTL immunity elicited by heteroclitic epitopes suggest that they could be of significant value in vaccination against tolerant or weakly immunogenic tumor-associated and viral antigens.
Journal Articles
Pedro J. Ruiz, Hideki Garren, David L. Hirschberg, Annette M. Langer-Gould, Mia Levite, Marcela V. Karpuj, Scott Southwood, Alessandro Sette, Paul Conlon, Lawrence Steinman
Journal:
Journal of Experimental Medicine
Journal of Experimental Medicine (1999) 189 (8): 1275–1284.
Published: 19 April 1999
Abstract
Molecular mimicry refers to structural homologies between a self-protein and a microbial protein. A major epitope of myelin basic protein (MBP), p87–99 (VHFFKNIVTPRTP), induces experimental autoimmune encephalomyelitis (EAE). VHFFK contains the major residues for binding of this self-molecule to T cell receptor (TCR) and to the major histocompatibility complex. Peptides from papilloma virus strains containing the motif VHFFK induce EAE. A peptide from human papilloma virus type 40 (HPV 40) containing VHFFR, and one from HPV 32 containing VHFFH, prevented EAE. A sequence from Bacillus subtilis (RKVVTDFFKNIPQRI) also prevented EAE. T cell lines, producing IL-4 and specific for these microbial peptides, suppressed EAE. Thus, microbial peptides, differing from the core motif of the self-antigen, MBPp87–99, function as altered peptide ligands, and behave as TCR antagonists, in the modulation of autoimmune disease.
Journal Articles
Sabine Pingel, Pascal Launois, Deborah J. Fowell, Christoph W. Turck, Scott Southwood, Alessandro Sette, Nicolas Glaichenhaus, Jacques A. Louis, Richard M. Locksley
Journal:
Journal of Experimental Medicine
Journal of Experimental Medicine (1999) 189 (7): 1111–1120.
Published: 05 April 1999
Abstract
Experimental leishmaniasis offers a well characterized model of T helper type 1 cell (Th1)-mediated control of infection by an intracellular organism. Susceptible BALB/c mice aberrantly develop Th2 cells in response to infection and are unable to control parasite dissemination. The early CD4 + T cell response in these mice is oligoclonal and reflects the expansion of Vβ4/ Vα8-bearing T cells in response to a single epitope from the parasite Leishmania homologue of mammalian RACK1 (LACK) antigen. Interleukin 4 (IL-4) generated by these cells is believed to direct the subsequent Th2 response. We used T cells from T cell receptor–transgenic mice expressing such a Vβ4/Vα8 receptor to characterize altered peptide ligands with similar affinity for I-A d . Such altered ligands failed to activate IL-4 production from transgenic LACK-specific T cells or following injection into BALB/c mice. Pretreatment of susceptible mice with altered peptide ligands substantially altered the course of subsequent infection. The ability to confer a healer phenotype on otherwise susceptible mice using altered peptides that differed by a single amino acid suggests limited diversity in the endogenous T cell repertoire recognizing this antigen.
Journal Articles
Yan Shi, Arunan Kaliyaperumal, Liangjun Lu, Scott Southwood, Alessandro Sette, Marissa A. Michaels, Syamal K. Datta
Journal:
Journal of Experimental Medicine
Journal of Experimental Medicine (1998) 187 (3): 367–378.
Published: 02 February 1998
Abstract
T cells specific for nucleosomal autoepitopes are selectively expanded in lupus mice and these Th cells drive autoimmune B cells to produce pathogenic antinuclear antibodies. We transfected the TCR-α and -β chain genes of a representative, pathogenic autoantibody-inducing Th clone specific for the nucleosomal core histone peptide H4 71–94 into TCR-negative recipient cells. Although the autoimmune TCRs were originally derived from SNF1 (I-A d/q ) mice, the transfectants could recognize the nucleosomal autoepitope presented by APC-bearing I-A molecules of all haplotypes tested, as well as human DR molecules. Competition assays indicated that the autoepitopes bound to the MHC class II groove. Most remarkably, MHC-unrestricted recognition of the nucleosomal peptide epitope was conferred by the lupus TCR-α chain even when it paired with a TCR-β chain of irrelevant specificity. Several other disease-relevant Th clones and splenic T cells of lupus mice had similar properties. The TCR-α chains of these murine lupus Th clones shared related motifs and charged residues in their CDRs, and similar motifs were apparent even in TCR-α chains of human lupus Th clones. The lupus TCR-α chains probably contact the nucleosomal peptide complexed with MHC with relatively high affinity/avidity to sustain TCR signaling, because CD4 coreceptor was not required for promiscuous recognition. Indeed, pathogenic autoantibody-inducing, CD4-negative, TCR-αβ + Th cells are expanded in systemic lupus erythematosus. These results have implications regarding thymic selection and peripheral expansion of nucleosome-specific T cells in lupus. They also suggest that universally tolerogenic epitopes could be designed for therapy of lupus patients with diverse HLA alleles. We propose to designate nucleosomes and other antigens bearing universal epitopes “Pantigens” (for promiscuous antigens).