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Biomedical subjects

G Giegerich

Publications and source records attributed to G Giegerich.

At least 19 recordsLinked to original sources

Targeting fibroblast growth factor-inducible-14 signaling protects from chronic relapsing experimental autoimmune encephalomyelitis.

The TNF-related weak inducer of apoptosis (TWEAK) is a TNF family member mediating proinflammatory effects by its receptor fibroblast growth factor-inducible-14 (Fn14). We studied the role of TWEAK/Fn14 in experimental autoimmune encephalomyelitis (EAE) by protein vaccination with TWEAK and Fn14 and recombinant TWEAK-DNA, respectively. TWEAK-DNA vaccination worsened the clinical course of EAE and increased central nervous system (CNS) inflammation. TWEAK increased the secretion of CCL2 [monocyte chemotactic protein-1 (MCP-1)] by CNS endothelial cells and astrocytes in vitro, suggesting CCL2 as a critical mediator of TWEAKs proinflammatory effects. Vaccination with the extracellular domain of TWEAK or with Fn14 resulted in the induction of specific inhibitory antibodies and an amelioration of EAE signs in two different models in rats and mice. Spinal cord inflammatory infiltrates were significantly diminished. Purified IgG from TWEAK- or Fn14-vaccinated rats prevented TWEAK-induced production of CCL2 by endothelial cells. Blocking Fn14 signaling represents a novel approach with potential for the treatment of CNS autoimmunity.

Animals↗

Usage of Vbeta3.3 T-cell receptor by myelin basic protein-specific encephalitogenic T-cell lines in the Lewis rat.

T-cell receptor (TCR) beta-chain usage in experimental autoimmune encephalomyelitis (EAE) seems to be much more heterogeneous than previously assumed even for a single autoantigen in an inbred animal strain. Owing to the lack of suitable antibodies, this has been demonstrated only at the RNA level so far. To characterize further the TCR elements used in the Lewis rat for the recognition of the main encephalitogenic region of myelin basic protein (MBP), BALB/c mice were immunized with T-cell hybridomas expressing non-Vbeta8.2 TCR specific for guinea pig MBP peptide aa 68-88. Two B-cell hybridomas (clones C-A11 and F-D6) producing TCR Vbeta3.3-specific monoclonal antibodies were selected. Specificity was demonstrated by RT-PCR and cloning of PCR products obtained from sorted T-cell lines and naive T cells. MBP-specific Vbeta3.3 T cells used the L-S motif in the VDJ region, were associated with Valpha2 or Valpha8 chains, and specifically recognized MBP peptide aa 68-88. Vbeta3.3 TCR-positive T cells were detected in all of a panel of six MBP-specific T-cell lines, although to a lesser degree than Vbeta8.2 TCR-positive T cells. After intravenous injection of sorted Vbeta3.3 T cells, animals developed EAE, and Vbeta3.3-positive cells were found by immunocytochemical analyses in the spinal cord. Furthermore, treatment of EAE induced by immunization with MBP was more effective when a combination of anti-Vbeta3.3 and anti-Vbeta8.2 mAbs was used. These results confirm the functional role of TCR Vbeta3.3 and thus underscore the heterogeneity of TCR usage in MBP-associated autoimmunity.

Animals↗

The ClpB protein from Campylobacter jejuni: molecular characterization of the encoding gene and antigenicity of the recombinant protein.

The ClpB heat-shock protein is necessary for the survival of Escherichia coli cells upon sudden increase of temperature. Using a PCR-based genomic walking method, the nucleotide sequence of a clpB homolog from Campylobacter jejuni was determined. The clpB gene encodes a protein of 857 amino acid (aa) residues, with a predicted molecular mass of 95.3kDa. Alignment of the deduced aa sequence with other known bacterial ClpB proteins revealed overall identity from 47% (E. coli) to 61% (Helicobacter pylori). Within the clpB promoter region, as indicated by primer extension analysis, we identified a sequence identical to the E. coli sigma70 consensus promoter. Northern blot analysis confirmed that clpB is heat-inducible in C. jejuni. The ClpB protein, fused to a 6xHis tag, was synthesized in E. coli and purified by metal-affinity and size exclusion chromatography. In ELISA studies, IgA levels reactive to recombinant ClpB were significantly higher in sera of patients with prior C. jejuni infections than in sera obtained from healthy control persons.

Amino Acid Sequence↗

Heterogeneity of T-cell receptor usage in experimental autoimmune neuritis in the Lewis rat.

In experimental autoimmune neuritis (EAN), T-cell receptor (TCR) variable (V)-region gene usage by neuritogenic T cells has been reported to be clonally restricted at the RNA level. This study was designed to verify TCR usage by neuritogenic T cells at the protein level. We generated two monoclonal antibodies (mAbs) 7H4 and 8G8 specific for a Vbeta4/Valpha11 associated idiotype expressed by the majority of neuritogenic cells of P2-specific T-cell lines. The remaining neuritogenic P2-specific T cells either exhibited a dominant usage of the TCR Vbeta13 chain recognized by the recently generated mAbs 17D5 and 18B1 or showed diverse Vbeta usage. Treatment of adoptive-transfer (AT)-EAN or of EAN actively induced with the neuritogenic P2 peptide by mAbs 7H4 and 8G8 led to a partial, but significant, reduction of clinical disease. Treatment with Vbeta13-specific mAb 17D5 had no clear effect on active EAN. Our data show that at least three different TCR are used by P2-specific pathogenic T cells in EAN, an animal model for human inflammatory neuropathies.

Adoptive Transfer↗

Cloning and expression of the dnaK gene of Campylobacter jejuni and antigenicity of heat shock protein 70.

Campylobacter jejuni is a leading cause of infectious diarrhea throughout the world. In addition, there is growing evidence that Guillain-Barré syndrome, an inflammatory demyelinating disease of the peripheral nervous system, is frequently preceded by C. jejuni infection. In the present study, the hrcA-grpE-dnaK gene cluster of C. jejuni was cloned and sequenced. The dnaK gene consists of an open reading frame of 1,869 bp and encodes a protein with a high degree of homology to other bacterial 70-kDa heat shock proteins (HSPs). The overall percentages of identity to the HSP70 proteins of Helicobacter pylori, Borrelia burgdorferi, Chlamydia trachomatis, and Bacillus subtilis were calculated to be 78.1, 60.5, 57.2, and 53. 8%, respectively. Regions similar to the Escherichia coli sigma70 promoter consensus sequence and to a cis-acting regulatory element (CIRCE) are located upstream of the hrcA gene. Following heat shock, a rapid increase of dnaK mRNA was detectable, which reached its maximum after 20 to 30 min. A 6-His-tagged recombinant DnaK protein (rCjDnaK-His) was generated in E. coli, after cloning of the dnaK coding region into pET-22b(+), and purified by affinity and gel filtration chromatography. Antibody responses to rCjDnaK-His were significantly elevated, compared to those of healthy individuals, in about one-third of the serum specimens obtained from C. jejuni enteritis patients.

Amino Acid Sequence↗

Cloning and expression of the Campylobacter jejuni lon gene detected by RNA arbitrarily primed PCR.

Fingerprinting of RNA by arbitrarily primed PCR was used to identify a heat-inducible gene in Campylobacter jejuni. Comparing RNA fingerprints from C. jejuni cells before and after 20 min of heat shock at 48 degrees C, a differentially amplified PCR product was identified which displayed a high degree of homology to bacterial lon genes. By screening C. jejuni genomic libraries, the entire lon gene was cloned and sequenced. It encodes a protein of 791 amino acids with a calculated molecular mass of 90.2 kDa. Alignment of the Lon amino acid sequence with that of other bacterial species revealed an overall identity of up to 56.6% (Helicobacter pylori). Northern and RNA dot blot experiments confirmed heat induction of the C. jejuni lon gene, revealing a maximum 6-8-fold increase in the level of specific mRNA.

ATP-Dependent Proteases↗

Diversity of the anti-T-cell receptor immune response and its implications for T-cell vaccination therapy of multiple sclerosis.

More precise understanding of the immune response against T-cell receptors (TCRs) is a prerequisite for successful TCR vaccination therapy of multiple sclerosis and other neurological autoimmune diseases. We conducted a detailed analysis of a paradigmatic anti-TCR response, using synthetic TCR peptides and highly purified recombinant TCR V alpha and Vbeta variable chains for the selection of CD4+ T-cell lines from a healthy volunteer. The target TCR (designated TCR(HWBP-3)) was obtained from HWBP-3, an autologous CD4+ T-cell line specific for myelin basic protein. The V alpha and Vbeta chains of TCR(HWBP-3) were expressed in Escherichia coli and purified by Ni-chelate chromatography and SDS (sodium dodecyl sulphate) gel electrophoresis. Further, we synthesized a set of 13- to 22-mer peptides spanning the complementarity-determining regions (CDR) 1, 2 and 3 and the framework regions (FR) of the alpha and beta chains of TCR(HWBP-3). The TCR peptides and proteins were then used to select a panel of TCR-specific CD4+ T-cell lines from donor HW. Several T-cell lines cross-reacted with a recombinant V chain and synthetic peptide. Cross-reactive immunogenic TCR epitopes were identified in the FR1 and CDR3 regions of the TCR(HWBP-3) alpha chain and in the FR1, CDR1 and CDR2 regions of the TCR(HWBP-3) beta chain. The TCR proteins and peptides were recognized in the context of at least three different HLA-DR molecules [DR2a (DRB5*0101), DR2b (DRB1*1501) and DRB1*1401/DRB3*0202]. Notably, the majority of the TCR peptide-selected T-cell lines did not react with the full-length recombinant V chains, suggesting they recognize 'cryptic' determinants. Based on the diversity of the anti-TCR immune response, we suggest that candidate TCR peptides should be screened in vitro in functional experiments before they are clinically applied for TCR vaccination therapy.

Amino Acid Sequence↗

Antigen therapy eliminates T cell inflammation by apoptosis: effective treatment of experimental autoimmune neuritis with recombinant myelin protein P2.

Exposure of T cells to their specific antigen normally results in proliferation, but in the presence of high and repeatedly administered doses of antigen, T cells may undergo apoptosis. Here we demonstrate that i.v. administration of as little as 100 microg of recombinant P2 protein twice daily completely prevents experimental autoimmune neuritis induced by adoptive transfer of neuritogenic P2-specific T cells or by immunization with the neuritogenic P2-peptide-spanning amino acids 53-78. Antigen treatment started after disease onset markedly ameliorated experimental autoimmune neuritis. The mechanism of action may be through programmed T cell death; a profound increase of the rate of apoptosis was seen in inflammatory foci of peripheral nerves and in the spleen. There was no cytokine switch by our Th1 cells after exposure to their specific antigen, but increased secretion of interferon gamma and tumor necrosis factor alpha was demonstrated. High antigen dose therapy using recombinant, pathogen-free protein may prove useful for the treatment of autoimmune inflammatory disorders of the nervous system.

Adoptive Transfer↗

T-cell receptor V beta-element expression in peripheral nerves of Lewis rats suffering from experimental autoimmune neuritis.

In experimental autoimmune neuritis (EAN), peripheral nerves are infiltrated by T-lymphocytes and macrophages. By RT-PCR and sequence analysis we characterized TCR V beta-element usage in sciatic nerve tissue of Lewis rats suffering from EAN induced by immunization with peripheral myelin antigens. Several TCR V beta-chain sequences were detected, which did not show homology to sequences of P2-reactive T cells published so far. In EAN induced with peripheral nerve myelin, but not with P2-protein or P2 peptide aa 53-78, TCR V beta 8.2 sequences identical to sequences of encephalitogenic myelin basic protein (MBP) reactive T-cells were identified. These results provide further evidence for a contribution of MBP-directed T-cell reactivity to the pathogenesis of myelin induced EAN and may have implications for the pathogenesis of human demyelinating neuropathies.

Animals↗

Alleles of highly homologous rat T cell receptor beta-chain variable segments 8.2 and 8.4: strain-specific expression, reactivity to superantigens, and binding of the mAb R78.

This study addresses the molecular basis of a Tcrb-V polymorphism in the reactivity to the superantigens staphylococcus enterotoxin B (SEB) and the mtv-7 sag (MIs1a) of T cells recognized by the mAb R78, which reacts with the T cell receptor beta-chain variable segment 8.2 (Tcrb-V8.2) of Lewis (LEW) rats. Tcrb-V8.2-like sequences were isolated from liver DNA of the responder strain LEW (I) and the nonresponder strain DA (a) and alleles of the Tcrb-V8.2 and the highly homologous Tcrb-V8.4 were identified. Their expression was analyzed by RNase protection studies and cDNA clones were characterized. A comparison of thymocytes, activated R78+ cells, Con A-stimulated and SEB-stimulated cells allows the following conclusions: the newly identified Lewis allele of Tcrb-V8.4 (Trcb-V8.4I) is nonfunctional due to a frame shift induced by deletion of one nucleotide. The R78 epitope is expressed by Tcrb-V8.2I and Tcrb-V8.4a but not by Tcrb-V8.2a. The implication of this finding for mapping of the R78 epitope and the study of V region usage in experimental autoimmune encephalitis are discussed. Finally, the expression of both Tcrb-V8.2 alleles but not of Tcrb-V8.4a in SEB-stimulated cells defines a polymorphism of the CDR2 and/or CDR4 as the molecular basis of the differential superantigen reactivity.

Alleles↗

Autoreactive T-cells in Goodpasture's syndrome recognize the N-terminal NC1 domain on alpha 3 type IV collagen.

Goodpasture's syndrome is mediated by immunopathogenic autoantibodies to the alpha 3 NC1 domain of type IV collagen. It is not known whether collaborating T-cells participate in this autoreactive response. Here we describe the first T-cell clone isolated from a Goodpasture patient autoreactive to alpha 3 type IV collagen of glomerular basement membrane. To investigate cellular autoreactivity, T-cells from Goodpasture patients or controls were isolated and stimulated by purified native or recombinant type IV collagen proteins and synthetic oligopeptides. Cell surface markers, the T-cell receptor repertoire, and MHC-restriction were analyzed. T-cell clones specific for the alpha 3 (IV) NC1 domain were established in two Goodpasture patients, but not in controls. One of the three CD8+ T-cell clones was characterized further. It was MHC class I restricted (HLA-A11) and expressed the T-cell receptor V beta 5.1. chain. This clone specifically recognized a motif at the N-terminal area of the alpha 3 (IV) NC1 domain (AA 51 to 59: GSPATWTTR). We conclude that autoreactive T-cells exists in Goodpasture patients and may play a crucial role in the inflammatory process. T-cell clones are autoreactive to the alpha 3 (IV) NC1 domain. At least for one of the clones, the T-cell epitope is different from the putative antibody-binding site.

Amino Acid Sequence↗

T cell antigenic and neuritogenic activity of recombinant human peripheral myelin P2 protein.

The major neuritogenic protein of peripheral nerve myelin is the P2 protein. Human P2 is a candidate autoantigen in inflammatory demyelinating diseases of the peripheral nervous system. Since human P2 is not readily available, we produced full-length recombinant human P2 protein (rhP2) in Escherichia coli. RhP2 was recognized by neuritogenic rat T cell lines and induced experimental autoimmune neuritis in Lewis rats. Production of rhP2 allowed the generation of human T cell lines reactive to the autologous protein. Studies of human T cell autoreactivity as well as efforts to use hP2 as a tolerogen will be facilitated by the large-scale expression of rhP2.

Amino Acid Sequence↗

T-cell receptor (TCR) usage in Lewis rat experimental autoimmune encephalomyelitis: TCR beta-chain-variable-region V beta 8.2-positive T cells are not essential for induction and course of disease.

Predominant usage of V beta 8.2 gene segments, encoding a T-cell receptor (TCR) beta chain variable region, has been reported for pathogenic Lewis rat T cells reactive to myelin basic protein (MBP). However, up to 75% of the alpha/beta T cells in a panel of MBP-specific T-cell lines did not display TCR V beta 8.2, V beta 8.5, V beta 10, or V beta 16 elements. To further investigate TCR usage, we sorted the T-cell lines for V beta 8.2- and V beta 10-positive T cells or depleted the lines of cells with these TCRs. V beta 8.2-positive T cells and one of the depleted T-cell lines strongly reacted against the MBP peptide MBP-(68-88). The depleted T-cell line caused marked experimental autoimmune encephalomyelitis (EAE) even in Lewis rats in which endogenous V beta 8.2-positive T cells had been eliminated by neonatal treatment with anti-V beta 8.2 monoclonal antibodies. T-cell hybridomas generated from this line predominantly used V beta 3 TCR genes coexpressed with TCR V alpha 2 transcripts, which were also used by V beta 8.2-positive T cells. Furthermore, V beta 10-positive T cells reactive to MBP-(44-67) were encephalitogenic when injected immediately after positive selection. After induction of EAE by sorted V beta 8.2- or V beta 10-positive T-cell lines, immunocytochemical analysis of the spinal cord tissue showed a predominance of the injected TCR or of nontypable alpha/beta T cells after injection of the depleted line. Our results demonstrate heterogeneity of TCR beta-chain usage even for a single autoantigen in an inbred strain. Moreover, V beta 8.2-positive T cells are not essential for the induction and progression of adoptive-transfer EAE.

Amino Acid Sequence↗

Structural analysis of the rat T-cell receptor Tcra V4 gene family.

The rat Tcra V gene locus is only poorly characterized, although rats are widely used in a variety of T-cell-mediated experimental animal models. Recently, we described the first monoclonal antibody, G99, directed against a rat Tcra V4 segment. We examined cDNA transcripts of G99-positively sorted T cells and show that the monoclonal antibody G99 most likely recognizes at least two members of the Tcra V4 family. Moreover, we analyzed the genomic repertoire of this VA family and report 15 novel Tcra V4 DNA sequences. Based on sequence and Southern blot analysis, the Tcra V4 family could be divided into four subgroups, which were also detected in mice. These findings corroborate previous findings of a similar genetic organization of the Tcra V loci in both species.

Amino Acid Sequence↗

Bacterial expression of a soluble T-cell receptor alpha chain.

A bacterial expression system was used to express the complete extracellular domain of a rat T-cell receptor alpha-chain, including variable-, joining and constant regions. By introduction of a His-tail at the C-terminus, a simple and rapid purification protocol utilizing Ni(+)-chelating chromatography was applied, with renaturation of the protein while bound to the matrix. This method produced large amounts of soluble protein, which provide a source for T-cell receptor analysis and further studies on T cell function.

Amino Acid Sequence↗