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Biomedical subjects

Brigitte T Huber

Publications and source records attributed to Brigitte T Huber.

7 recordsLinked to original sources

An effective second-generation outer surface protein A-derived Lyme vaccine that eliminates a potentially autoreactive T cell epitope.

The antigenic component of a common Lyme disease vaccine is recombinant outer surface protein A (rOspA) of Borrelia burgdorferi (Bb), the causative agent of Lyme disease. Coincidentally, patients with chronic, treatment-resistant Lyme arthritis develop an immune response against OspA, whereas those with acute Lyme disease usually do not. Treatment-resistant Lyme arthritis occurs in a subset of Lyme arthritis patients and is linked to HLA.DRB1*0401 (DR4) and related alleles. Recent work from our laboratory identified T cell crossreactivity between epitopes of OspA and lymphocyte function-associated antigen 1alpha(L) chain (LFA-1alpha(L)) in these patients. We generated a form of rOspA, FTK-OspA, in which the LFA-1alpha(L)/rOspA crossreactive T cell epitope was mutated to reduce the possible risk of autoimmunity in genetically susceptible individuals. FTK-OspA did not stimulate human or mouse DR4-restricted, WT-OspA-specific T cells, whereas it did stimulate antibody responses specific for WT-OspA that were similar to mice vaccinated WT-OspA. We show here that the protective efficacy of FTK-OspA is indistinguishable from that of WT-OspA in vaccination trials, as both C3H/HeJ and BALB/c FTK-OspA-vaccinated mice were protected from Bb infection. These data demonstrate that this rOspA-derived vaccine lacking the predicted cross-reactive T cell epitope, but retaining the capacity to elicit antibodies against infection, is effective in generating protective immunity.

Animals↗

Phosphorylation of the pro-apoptotic protein Bim in lymphocytes is associated with protection from apoptosis.

Bim is a pro-apoptotic member of the Bcl-2 protein family. Bim has three isoforms, EL, L, and S, of which the EL form is the least cytotoxic. We show here that Bim is serine phosphorylated in lymphocytes, predominantly on the EL form. Withdrawal of IL-2 from IL-2-dependent T lymphocytes or culture of thymocytes leads to reduced Bim phosphorylation and apoptosis induction. This decrease in Bim phosphorylation occurs when most cells in culture are still viable, indicating that reduction of Bim phosphorylation may be an early event in apoptosis signaling of lymphocytes.

Animals↗

Native and recombinant interleukin-2, two functionally distinct molecules.

Recombinant IL-2 (rIL-2) produced in prokaryotes, is widely used in lieu of native IL-2, which is secreted by T cells, to assess the functional profile of this cytokine. We provide evidence that a naturally occurring species of post-translationally modified IL-2 (moIL-2) exhibits enhanced bioactivity compared to rIL-2, as tested at the biochemical and functional level. We show that moIL-2 has high binding affinity for the IL-2 receptor (IL-2R), induces the immediate expression of the IL-2R alpha chain and rapidly activates downstream signaling molecules. Finally, in contrast to rIL-2, moIL-2 can promote the antigen-independent proliferation of resting lymphocytes. Collectively, our data demonstrate that native moIL-2 is functionally distinct from rIL-2, suggesting the existence of diverse IL-2 variants which may be critical for the shaping of the immune response.

Cell Division↗

Differential T-cell activation by B7-1 expression.

T-cell receptor-mediated T-cell activation requires cosimulation signal, which can be provided by B7-1 molecule. Our previous study demonstrated that the coexpression of a covalent peptide/major histocompatibility complex class II molecule complex and costimulatory molecule B7-1 by recombinant adenovirus leads to synergy in peptide-specific T-cell activation. However, the viral antigen-specific T-cell activation is not enhanced by B7-1 expressed by the adenovirus. To verify the differential T cell activation by B7-1 and investigate its underlying mechanisms, we constructed an adenovirus coexpressing a covalent complex of hen egg lysozyme peptide/I-Ak (HEL46-61/I-Ak) and B7-1 in the present study. In vivo studies revealed that HEL46-61-specific T-cell response, but not viral antigen-specific T-cell response, was enhanced by B7-1 expression mediated by the adenovirus, suggesting that exogenous B7-1 expression may regulate T-cell response to these two different antigens through distinct mechanisms. Furthermore, our results revealed that antigen-presenting cells were not susceptible to adenovirus infection in vivo. Based on these findings, the possible mechanism of differential B7-1 costimulation on peptide-specific and viral antigen-specific T-cell activation is discussed.

Adenoviridae↗

Host-adapted Borrelia burgdorferi in mice expresses OspA during inflammation.

Antibody responses to outer surface protein A (OspA) of Borrelia burgdorferi may occur during periods of arthritis late in the clinical course of untreated Lyme disease. These antibody responses are paradoxical, given the conclusive evidence demonstrating that B. burgdorferi transmitted to the mammalian host expresses little or no OspA. The parallel occurrence of OspA antibodies and arthritic episodes suggests that OspA expression is upregulated during infection with B. burgdorferi. We hypothesized that this was due to the inflammatory environment caused by the immune response to the spirochete. To test our hypothesis, we adapted an in vivo model that mimics the host-pathogen interaction. Dialysis chambers containing B. burgdorferi were implanted into the peritoneal cavities of mice in the presence or absence of zymosan, a yeast cell wall extract that induces inflammation. Spirochetes were harvested 2 days later, and OspA expression was assessed at the protein and transcription level by Western blotting and real-time reverse transcription-PCR, respectively. Flow cytometry was also utilized to evaluate OspA protein expression on individual spirochetes. B. burgdorferi maintained in an inflammatory in vivo environment show an increased OspA expression relative to B. burgdorferi kept under normal in vivo conditions. Furthermore, host-adapted B. burgdorferi with a low OspA phenotype upregulates OspA expression when transferred to an inflammatory in vivo environment. The results obtained by these techniques uniformly identify inflammation as a mediator of in vivo OspA expression in host-adapted B. burgdorferi, providing insights into the behavior of live spirochetes in the mammalian host.

Adaptation, Physiological↗

Development of autoimmunity in Lyme arthritis.

Treatment-resistant Lyme arthritis (TRLA) develops in 10% of Lyme arthritis patients and is characterized by continuous joint inflammation that does not resolve with antibiotic therapy. TRLA is associated with HLA-DRB1*0401 and related alleles, as well as with an immune response to the Borrelia burgdorferi (Bb) outer surface protein A (OspA). The immunodominant epitope of OspA in the context of HLA-DRB1*0401 corresponds to amino acids 165-173 (OspA165-173). The human Lymphocyte Function Antigen-1 (hLFA1alpha) contains a peptide with homology to OspA165-173. Treatment-resistant Lyme arthritis patients' T cells, cloned based on their ability to bind OspA165-173-loaded HLA-DRB1*0401 tetramers, respond to OspA and hLFA1alpha with a different cytokine profile, suggesting that hLFA1alpha acts as a partial agonist with a potential role in the perpetuation of joint inflammation.

Antigens, Surface↗