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Synthetic peptides and beta-chain gene rearrangements reveal a diversified T cell repertoire for a lambda light chain third hypervariable region.

Twelve L3T4+ Ly-2.2- subclones, derived from 4 independent BALB/c T cell lines, responded to a combination of the I-Ed molecule and a synthetic peptide corresponding to residues 91-108 of the lambda light chain from BALB/c myeloma protein M315 (alpha, lambda 2). Peptide analogues in which the mutated residues Arg95 or Asn96 were exchanged with the corresponding germ-line-encoded Ser95 or Thr96 had an abolished or greatly reduced capacity to stimulate T cell clones. However, responses of subclones to an analogue where the mutated Phe94 was substituted with the germ-line-encoded Tyr94 revealed three specificity patterns: 5 clones reacted only with the lambda 2(315) peptide, 6 clones responded equally well to both peptides and a single clone reacted better with the Tyr94 analogue. Analysis of the T cell receptor beta-chain gene rearrangements disclosed 7 distinct rearrangements, identical rearrangements only being found for subclones originating from the same line. At least 3 different V beta genes were used. Subclones with identical or nearly identical peptide specificity, major histocompatibility complex-restriction and alloreactivity could differ in their V beta or J beta gene segment utilization.

Amino Acid Sequence↗

Conformation of the hypervariable region L3 without the key proline residue.

The refined structure of the Fab fragment of the monoclonal antibody CRIS-I (IgG2a kappa) against the leukocyte differentiation antigen CD5, determined at 1.9 A resolution with an agreement R-factor of 18.3%, reveals a variant of the canonical conformations proposed for the light chain complementarity determining region L3 (CDR-L3). This is the first Fab structure available with a kappa light chain in which the CDR-L3 lacks the key proline residue in either position 94 or 95. The conformation found could be significant for about 10% of the murine IgG molecules with kappa light chains without proline in their CDR-L3 sequences.

Animals↗

Murine antibodies against E2 and hypervariable region 1 cross-reactively capture hepatitis C virus.

The absence of readily available animal and cell culture models for hepatitis C virus (HCV) replication has bottlenecked research on protective immunity to HCV infection. Antibodies reactive with HCV virions in vitro are assumed to be candidates for neutralizing or inhibitory antibodies against HCV. To find potentially neutralizing or inhibitory antibody candidates, anti-C, anti-E1, anti-E2, and anti-HVR1 antisera acquired from mice immunized with corresponding recombinant proteins or synthetic peptides were used to capture HCV viral particles in vitro based on antibody-virus interaction assays. Both anti-E2 and anti-HVR1 antibodies effectively captured HCV in vitro. Furthermore, it was found that anti-E2 and anti-HVR1 antibodies could immunoprecipitate an isolate of HCV unrelated to the original antigenic HCV isolate. ELISA confirmed that anti-HVR1 antibodies cross-reactively bind to these unrelated HVR1 peptides. These findings suggest that anti-E2 and anti-HVR1 antibodies induced in mice have the ability to bind with HCV particles in an isolate cross-reactive manner and highlight the possible application of combining several sequences of HVR1 to generate broadly reactive anti-HVR1 antibodies.

Amino Acid Sequence↗

Variation in the size of human apolipoprotein(a) is due to a hypervariable region in the gene.

We have investigated whether the size heterogeneity of the human apolipoprotein(a) [apo(a)] is due to differences in the number of plasminogen kringle 4-like repeat units present in the different alleles. Using the Southern blot hybridization technique and a DNA probe for the kringle 4 domain of plasminogen, we have observed that in 31 different individuals a 5.8-kb PvuII restriction fragment band varies widely in intensity relative to other bands. A strong correlation (r = 0.76, P less than 0.001) was found between apo(a) protein size and the variation in intensity of the detected restriction fragment band. We confirmed this correlation in a large family where the parents are heterozygous for the apo(a) protein size isoforms. The specificity of the 5.8-kb band was established by using an apo(a)-specific oligonucleotide. These correlations strongly suggest that the observed size heterogeneity in apo(a) protein is due to different numbers of copies of the kringle 4 sequence in the apo(a) glycoprotein gene.

Alleles↗

A hypervariable region at the D19S11 locus.

The polymorphic locus D19S11 consists of four closely linked RFLPs: alpha, beta, delta, and gamma on chromosome 19p13.2----19cen, revealed by subclones p13-1-82 and p13-2-21 from cosmid 1-13. Here, we report that p13-1-25, an additional subclone of c1-13, reveals three insertion/deletion RFLPs, alpha, epsilon, and phi, at the D19S11 locus. In situ hybridization of p13-1-25 to metaphase chromosomes from a carrier of a 19/X translocation with a breakpoint near the centromere confirms localization of D19S11 to 19p. Studies with hydatidiform moles have generated assignments of specific restriction fragments to these three loci, and genotypic studies in three-generation families have indicated that they are closely linked. Loci alpha (also detected by p13-1-82) and phi each have but two common alleles, whereas epsilon has at least 33 alleles, including a null allele. Fifty unrelated individuals tested displayed unique fragment patterns on Taq I blots probed with p13-1-25. Applications of this probe include monitoring loss of chromosome 19 during tumorigenesis, monitoring engraftment of donor bone marrow after transplantation, testing for paternity, and mapping disease genes on chromosome 19.

Chromosome Mapping↗

Evaluation of mixed chimerism by two-step polymerase chain reaction amplification of hypervariable region MCT118 after allogeneic bone marrow transplantation.

We assessed the origin of peripheral blood cells and bone marrow cells of 92 samples obtained from 19 patients after allo BMT by two-step polymerase chain reaction (PCR) amplification of MCT118, one of the variable number of tandem repeat regions (VNTR) which has a different length in 19 of 32 sibling pairs examined, that can detect the DNA pattern of a minor cell population of only 1% without using radioisotopes. Mixed chimerism (MC) was detected in the hematopoietic cells of four patients. Two patients who showed progressive MC developed relapse of leukemia 3 months and 4 months after the detection of MC, and two patients died with bone marrow hypoplasia 61 days and 7 months after BMT. These data suggest the clinical importance of analyzing the correlation of MC and clinical complications after BMT by this method, which can be used to monitor MC in about two thirds of allo BMT patients with an adequate sensitivity.

Base Sequence↗

[Hypervariable regions (HVR) as genetic markers in tumor diagnosis. Methodological principles and their use in pathologic diagnosis].

Variable number tandem repeats (VNTR) are highly polymorphic DNA sequences which can be used as genetic markers in different fields of medicine. In this report, we describe the methodology of VNTR in diagnostic molecular pathology, using a rapid, DNA-based approach involving polymerase chain reaction (PCR) amplification and electrophoresis of highly polymorphic DNA satellite sequences. As concrete examples of the application of this approach, we present two case reports: 1. A B-cell lymphoma of the porta hepatis developed in a 54-year-old man 4.5 months after orthotopic liver transplantation for liver failure due to chronic hepatitis C infection. Using DNA polymorphisms as genetic markers, we showed that the tumor was of donor origin. This finding may be important for the patient's subsequent management. 2. An immature teratoma of the left ovary was found during delivery by cesarean section in a 27-year-old woman. The female newborn survived for 9 weeks and then died from central dysregulation because of an intracranial immature teratoma. Because the synchronous tumors were of similar histology, clonal origin in maternal tissues and metastatic spread were initially suspected. Analysis of highly polymorphic DNA markers clearly indicated that the teratoma carried by the child was of independent genetic origin from the mother's tumor.

Brain↗

Entamoeba histolytica extrachromosomal circular ribosomal DNA: analysis of clonal variation in a hypervariable region.

The ribosomal RNA genes of the protozoan parasite Entamoeba histolytica are highly repeated and display restriction fragment length polymorphism. Using a set of four DNA probes spanning the coding region and part of the flanking region of the E. histolytica ribosomal RNA genes, an analysis of the DNA bands generated by EcoRI digestion of Entamoeba DNA is presented. This analysis included five strains of E. histolytica, four strains of E. moshkovskii, and one strain each of E. invadens and E. terrapinae. No common bands were observed between E. histolytica and the other Entamoeba. Within E. histolytica, two bands were conserved in all strains while the others were polymorphic. Detailed analysis of DNA from independently isolated clones of the strain HM-1:IMSS of E. histolytica showed two bands to be highly polymorphic. Of these, the 4.4-kb band of clone 6 was further analyzed. Polymorphism in this band could even be demonstrated in cells of the same clone. Restriction enzyme analysis of this DNA band from two clones of HM-1:IMSS showed that the polymorphism may be due to variable numbers of DraI repeat units present in this DNA stretch.

Animals↗

Vaccination with peptides from MHC class II beta chain hypervariable region causes allele-specific suppression of EAE.

In our earlier studies we showed that successful immunotherapy of EAE in SJL/J mice can be achieved either by the use of antibodies to MHC class II antigens or by vaccination with synthetic peptide analogs of the beta chain of MHC class II molecules. We proposed that inhibition of EAE following vaccination with synthetic peptides derived from the beta chain of mouse I-A, was in part due to the generation of auto-anti-MHC class II antibodies that interfered with T cell sensitization. In our present study we show that suppression of EAE following vaccination results in poor sensitization of MBP reactive T cells, and that the lack of immune response is allele-specific. In F1(SJL(I-AS) x Balb/cI-Ad) mice, in which susceptibility to EAE is linked closely to the I-AS allele, vaccination with peptides from beta chain of I-AS results in inhibition of proliferative response to MBP and prevents the development of EAE. Vaccination with peptide from the beta chain of I-Ad did not affect either the development of immune response to MBP or the induction of EAE, indicating allele-specific suppression. Since global immunosuppression is not induced by vaccination with I-A peptides, we propose that this strategy can be extended to human autoimmune diseases wherein a clear association between certain MHC class II alleles and autoimmune disease is evident.

Alleles↗

Acidic residues in the DR beta chain third hypervariable region are required for stimulation of a DR(alpha, beta 1*0402)-restricted T-cell clone.

We investigated the minimal requirements for stimulation of an antigen-specific HLA-DR(alpha, beta 1*0402)-restricted T-cell clone (Een217) by using transfectants expressing mutant DR beta chains as APCs. Antigen-specific stimulation of Een217 was induced with transfectants expressing DR(alpha, beta 1*0402) and DR(alpha, beta 1*0403) but not other DR4 subtypes that also bind the peptide recognized by this clone. Analysis of the effects of single amino acid substitutions in the beta chains of each of the DR4 subtypes revealed a requirement for acidic residues in the third HVR, particularly amino acid 71, in stimulation of clone Een217. Functional class II mutants were generated from nonstimulatory DR4 subtype beta chains by acidic residue substitutions within the third HVR. These data define the requirement for negatively charged residues in this region for peptide-induced stimulation of this T-cell clone. The required acidic residues can be located at either position 70, 71, or 74 in the DR beta chain. The negative charge in this segment of the DR beta chain alpha-helix may be required for direct interactions with the T-cell receptor of Een217 or may affect peptide conformation.

Amino Acid Sequence↗

Affinity improvement of single antibody VH domains: residues in all three hypervariable regions affect antigen binding.

BACKGROUND: Through antibody engineering, immunoglobulins can be tailored for their particular application. In this respect, small recognition units are desired for the targeting of antigens in obstructed locations like solid tumors. OBJECTIVES: To design efficient, minimum size recognition units, heavy chain variable regions (VH) had previously been modified for the use as antigen specific, single domain antibody fragments. To develop a rational approach to improve affinity, antigen binding is investigated here by analysing the effect of randomisations of CDR1 and 2 residues in VH domains specific for hapten and protein ligands. STUDY DESIGN: Randomised repertoires were displayed on phage and affinity selected to improve and analyse antigen binding. Affinities of newly selected VH domains were determined in their soluble format to assess the role of modified residues in binding. RESULTS: In four of five randomisation experiments, a new VH with an improved antigen affinity compared to the primary VH was selected. Dissociation constants decreased from 160 nM to 25 nM or 47 nM (CDR1 or CDR2 randomisation of an anti-Ox VH), from 300 nM to 31 nM (CDR2 randomisation of an anti-NIP VH) and from 3.1 microM to 1.6 microM (CDR2 randomisation of an anti-lysozyme VH). CONCLUSIONS: Thus the affinity of VH domains can be improved after site specific, secondary randomisations in CDR1 and CDR2, phage display and antigen selection. As differences in the CDR3 sequences had formed the only difference between the primary VH domains used in this study, the effect of CDR1 and CDR2 mutations of affinity is consistent with a participation of all three CDRs in antigen binding by single VH domains.

Amino Acid Sequence↗

Human cellular fibronectin: comparison of the carboxyl-terminal portion with rat identifies primary structural domains separated by hypervariable regions.

We report the isolation and characterization of four overlapping cDNA clones coding for human cellular fibronectin which continuously cover more than 3 kilobases in length. The nucleotide sequence of these cDNAs has been determined, thus elucidating the amino acid sequence of the C-terminal 794 residues of human fibronectin, which cover the edge of cellular-, heparin-, and fibrin-binding domains of this protein. Comparisons of the nucleotide sequences and the deduced amino acid sequences with those of rat [Schwarzbauer, J. E., Tamkun, J. W., Lemischka, I. R., & Hynes, R. O. (1983) Cell (Cambridge, Mass.) 35, 421] indicate a high degree of conservation at both nucleotide and amino acid levels. Comparison with previously published data on amino acid sequences of bovine fibronectin made it possible to identify structurally important features of the protein during the evolution of human, calf, and rat. The deduced human amino acid sequences contain five type III and three type I repeats of internal homologies. The interspecies conservation in amino acids is more pronounced in regions containing the internal repeats and within each functional domain. The implications of these interspecies conservation and divergence are discussed.

Amino Acid Sequence↗