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Nucleotide sequence of hepatitis C virus (type 3b) isolated from a Japanese patient with chronic hepatitis C.

The genomic sequences of many hepatitis C virus (HCV) isolates have been reported and a variety of virus genotypes have been classified based on homology in the conserved regions. We have previously identified five distinct genotypes (1a, 1b, 2a, 2b and 3b) in Japanese patients with chronic HCV infection by comparing the sequences of the NS5 region. The complete nucleotide sequence for five genotypes (1a, 1b, 1c, 2a and 2b) have already been reported and we report here the complete nucleotide sequence of genotype 3b. The isolate (HCV Tr) was 9439 nucleotides long, excluding the poly(U) tract at its 3' end, and encodes a single long open reading frame of 3023 amino acids. Total nucleotide sequence homologies were 68.4 to 68.7%, 68.3 to 69.0%, 67.2%, 65.8% and 65.6% compared with type 1a, 1b, 1c, 2a and 2b genomes, respectively. The amino acid sequences of these five genotypes were highly homologous in the core, NS3 and NS5B regions, but the E2/NS1 region, which contains hypervariable regions 1 and 2, and the NS5A region were poorly conserved. Although it was possible to detect antibody against the relatively homologous core and NS3 regions by ELISA, the presence of divergent protein structures must be taken into account in the development of a vaccine.

Amino Acid Sequence

Early-onset pauciarticular juvenile chronic arthritis is associated with a mutation in the Y-box of the HLA-DQA1 promoter.

Early-onset pauciarticular juvenile chronic arthritis (EOPA-JCA) has associations with different alleles of the MHC region (HLA-A2, DR5, 6, 8, DQA1*0401, *0501, *0601 and DPB1*0201). All susceptible DQA1 alleles carry an exclusive sequence motif. MHC-class II gene expression is controlled by 5' flanking upstream regulatory regions (URR). A hypervariable region in the promoter region of the HLA-DQA1 gene (-240 and -200 base pairs upstream) defines ten different QAP (DQA1-Promoter) alleles, which are associated with certain DQA1-alleles. The Y-Box in the DQA1 promoter (YC-Box -125 to -115 upstream from the ATG) differs from the consensus sequence (-123 A for G) of all other MHC class II Y-Boxes, resulting in a lower affinity to the NF-Y transcription factor and in a reduced expression of DQA1. A second substitution in the Y-Box of QAP 4.1 and 4.2 (-119 A for G) is found in the promoter alleles of the DQA1-alleles (DQA1*0401, *0501, *0601) and is strongly associated with susceptibility to EOPA-JCA.

Age of Onset

Immunoglobulin structure: amino terminal sequences of mouse myeloma proteins that bind phosphorylcholine.

The amino terminal sequences of five light and heavy immunoglobulin chains from myeloma proteins of the BALB/c mouse with binding activity to phosphorylcholine are presented. Except for a single substitution in position 4, all five heavy chains have identical amino terminal sequences through the first hypervariable region. Proteins which share unique (idiotypic) antigenic determinants are identical through the first hypervariable region of their light and heavy chains. Proteins with differing idiotypic determinants have light chains of differing amino acid sequence. These observations suggest that the heavy chain plays a more important role than the light chain in determining the phosphorylcholine binding site.

Amino Acid Sequence

Identification of hypervariable and conserved regions in the surface envelope gene in the bovine lentivirus.

The surface envelope (SU) gene of nine different isolates of the bovine lentivirus (BIV) were compared for nucleotide and deduced amino acid (aa) sequence diversity. Analyses were done both on isolates derived from the original reference strain, R29, and on field isolates of BIV. Six conserved and six hypervariable regions were identified. Many of the hypervariable regions were located in areas predicted to be on the surface of the SU protein. The SU gene comparison among all isolates showed up to a 50% aa sequence divergence. When a conserved region of the reverse transcriptase gene was compared among eight of the isolates, there was less than 11% aa sequence divergence. When comparing all isolates, the greatest size differences in the SU gene are observed in the 2nd hypervariable region (V2) with up to a 104-aa difference between the largest and smallest variant. R29-106, an infectious molecular clone of the original isolate of BIV, has an 87-bp deletion in V2 as compared to prototype isolate R29-127. All R29-derived isolates sequenced for this study had a SU gene size similar to R29-106. The four field isolates sequenced for this study had SU genes larger than R29-127. R29-derived isolates may not be representative of BIV currently present in United States cattle.

Amino Acid Sequence

Effect of structural modifications on the assembly of a glycinin subunit.

A Gy4 glycinin cDNA was modified and used to produce structurally altered 11S storage protein subunits. We evaluated these modified subunits for their ability to assemble into oligomers. Alterations made in the acidic polypeptide changed the subunit solubility characteristics but did not eliminate assembly. Modifications in the basic polypeptide usually eliminated assembly of subunits into trimers. A region exhibiting high natural variability located at the COOH terminus of the acidic polypeptide that we have designated the hypervariable region was also studied. Extensive deletions and insertions were tolerated in the hypervariable region without perturbing subunit assembly. Some of the insertions significantly increased the methionine content in the Gy4 glycinin subunit. Together, our results indicated that the structure of the basic polypeptide was more critical for assembly of trimers than that of the acidic polypeptide, an observation that implies that the basic polypeptides direct trimer formation. The assembly assays described here will be useful in efforts to improve seed quality. Using them, the effects of modifications to the storage protein subunits can be rapidly evaluated before introducing the mutated genes into plants.

Base Sequence

Analysis of the structural diversity of monoclonal antibodies to cyclosporine.

The immunosuppressive cyclic undecapeptide cyclosporine (Cs) represents a useful model for studying the molecular basis of antibody-antigen interactions. The three-dimensional structure of the Cs molecule is known and a large panel of monoclonal antibodies (mAbs) to Cs has been well characterized by cross-reactivity studies with numerous Cs analogs. In the present study, the sequences of the variable regions of seven mAbs to Cs were determined and a striking relationship was found between the expressed variable region genes and the Cs recognition pattern. An analysis of the length and hydrophobic content of the hypervariable regions and sequence similarities suggested that the heavy chain plays a major role in Cs recognition. Different fine specificities were observed for mAbs exhibiting identical light chains, while two antibodies differed by only a single amino acid located in the heavy chain. The presence of a duplication of 12 nucleotides within the heavy chain third hypervariable region of two antibodies suggests the existence of an additional mechanism for creating antibody diversity.

Amino Acid Sequence

Evolution rate of hepatitis delta virus RNA isolated in Taiwan.

The complete RNA sequences of hepatitis delta viruses (HDV) isolated at 3 years apart from a chronic delta hepatitis patient in Taiwan were determined. The sequence analysis showed an overall evolution rate of 3.18 x 10(-3) substitutions/nucleotide/year. The evolution rates in different parts of HDV RNA varied. The hypervariable region evolved faster (4.55 x 10(-3) substitutions/nucleotide/year) than the hepatitis delta antigen (HDAg)-coding region (2.60 x 10(-3) substitutions/nucleotide/year) and the autocatalytic region (1.11 x 10(-3) substitutions/nucleotide/year). These data are compatible with the previous finding that the hypervariable region is more divergent than the HDAg-coding region and the autocatalytic regions among the HDV isolates from different geographic areas. No substitution was found in the four previously identified conserved domains of HDV RNA, further confirming their functional importance in viral replication. The evolution rate of this HDV RNA is higher than that determined from the partial RNA sequences of two Japanese HDV isolates and similar to that found in a Lebanon isolate. Further, it was found that this HDV RNA retained the same microheterogeneities at 15 nucleotide positions detected in the RNA 3 years earlier. It is concluded that HDV RNA in patients' serum is extremely heterogeneous, and that the nucleotide substitutions in certain nucleotide positions likely have conferred evolutionary advantages for HDV. Viral sequence evolution is a possible mechanism for chronic HDV infection.

Adult

Molecular mapping of idiotopes of anti-arsonate antibodies.

As part of understanding molecular function in structural terms, we have been attempting to map the idiotypic topography of specific anti-arsonate (Ars) antibodies. A panel of anti-Ars hybridomas of which the complete primary sequences are known were used. These molecules show a varied reactivity profile with a panel of monoclonal anti-idiotypic antibodies. By judicious chain recombination experiments and chemical modifications that altered this reactivity profile, we were able to identify particular amino acid residues or discreet regions of anti-Ars antibodies as having crucial roles in the expression of idiotypic determinants. Idiotopes were mapped to the heavy chain second hypervariable region and D segment, and to the light chain first and third hypervariable regions.

Amino Acid Sequence

The Staphylococcus aureus mec determinant comprises an unusual cluster of direct repeats and codes for a gene product similar to the Escherichia coli sn-glycerophosphoryl diester phosphodiesterase.

The DNA sequence located between mecA, the gene that codes for penicillin-binding protein PBP2', and insertion sequence-like element IS431mec has been termed hypervariable because of its length polymorphism among different staphylococcal isolates. We sequenced and characterized the hypervariable region of the methicillin resistance determinant (mec) isolated from Staphylococcus aureus BB270. Within the 2,040-bp hypervariable region, we identified an unusual accumulation of long direct repeats. Analysis of the DNA sequence revealed a minimal direct repeat unit (dru) of 40 bp which was repeated 10 times within 500 bp. The dru sequences are responsible for the length polymorphism of mec. Moreover, we identified an open reading frame that codes for 145 amino acids (ORF145), whose deduced amino acid sequence showed 57% amino acid sequence similarity to the N terminus of the glycerophosphoryl diester phosphodiesterase (UgpQ) of Escherichia coli.

Amino Acid Sequence

Receptor specificity of the Escherichia coli T-even type phage Ox2. Mutational alterations in host range mutants.

The T-even type Escherichia coli phage Ox2 uses the outer membrane protein OmpA as a receptor. The protein is recognized with the ends of the virion's long tail fibers. The 266 residue protein 38 is located at this site and acts as an adhesin. Host-range mutants had previously been isolated from Ox2. Mutant Ox2h5 is able to infect cells possessing an altered OmpA protein, which renders the cell resistant to Ox2. Ox2h10 was selected from Ox2h5. This phage recognizes the OmpC protein in addition to the OmpA protein. Ox2h12, which stems from Ox2h10, binds to OmpC with high affinity, but has lost efficient binding to OmpA. The mutational alterations caused in genes 38 are: Asp231----Asn(h5) and His170----Arg(h10). The triple mutant Ox2h12 possesses an insertion of a Gly residue next to Gly121. The three mutants have additionally acquired mutations affecting their base plate, making them "trigger-happy". When protein 38 was compared with the same protein derived from other E. coli phages, it was found to contain two constant and one variable domains, the latter harboring four hypervariable regions flanked by a largely conserved glycine-rich sequence. The h5 and h10 mutations occurred within two hypervariable areas, while the additional Gly residue was present in one of the flanking conserved sequences. On the basis of these results, as well as those obtained from host-range mutants analyzed previously, a model for such adhesins is proposed. Receptor recognition is most likely performed via the hypervariable regions, which may form loops held together in close proximity by the oligoglycine sequences. The latter may achieve this by being part of highly compact omega loops.

Bacterial Outer Membrane Proteins

Heavy-chain variable-region sequence from an inulin-binding myeloma protein.

The entire variable-region sequence of the heavy chain from ABE-47N, a BALB/c inulin-binding myeloma protein, has been determined. This protein is unusual in that the third complementarity region (H3) is extremely short, consisting of at the most three and probably only one amino acid. A comparison of the heavy-chain hypervariable regions from mouse, human, and rabbit proteins shows that the variability in length of H3 is greater than that seen in the first or second hypervariable regions. This variability in H3 length suggests a specialized function for this region.

Amino Acid Sequence

Towards a chemical definition of idiotypy.

The idiotypic determinants have been precisely located to the variable regions of immunoglobulin polypeptide chains. Both chains are generally required to express the idiotype. The major idiotypic determinants are the result of the amino acid sequence of the hypervaiable regions, although some idiotypic determinants reside outside the antibody combining site and these so called "framework idiotypes" are important markers. In my view the hypervariable regions are spatially disposed so as to present adequate antigenic stimulation, and they display enough structural heterogeneity to account for the uniqueness of the idiotype in the general population of immunoglobulin molecules. Hypervariable regions, the antibody combining site, and the idiotypic determinants thus amalgamate three formerly diverse concepts into a unified theoretical construct.

Binding Sites, Antibody

Molecular basis for degenerate T-cell recognition of one peptide in the context of several DR molecules.

We report the study of one CD4+ T-cell clone that recognizes peptide HA306-320 in the context of autologous DR1101 molecules as well as of allogeneic DR1301, DR0402, DR1501, and DR1601 molecules. This degenerate T-cell recognition is mediated by a single T-cell receptor (TCR) as judged by both TCR-V beta sequencing and cold-target competition assays. Restriction analysis shows that substitutions of DR residues within the third hypervariable region result in a loss of T-cell reactivity, which is restored by additional substitutions in the first and/or second hypervariable regions. Thus, there is no correlation between antigen presentation abilities of the different allelic DR products and the degree of sequence homology between these products. DR residues whose substitution is compatible with T-cell recognition potentially interact with peptides rather than with TCRs by virtue of their location in the floor of the groove or as previously documented for residues of the alpha-helix. Furthermore, antigen presentation by allogeneic DR molecules occurs independently of their affinity for the peptide, as determined in cell surface-binding assays using biotinylated HA306-320. Altogether these data suggest that degenerate T-cell recognition mainly depends on an influence of polymorphic DR residues on the configuration adopted by the peptide in the DR groove so that the epitope is left intact.

Amino Acid Sequence

Heavy-chain variable regions in normal and pathological immunolobulins.

Aminoacid sequence analysis of immunoglobulin G heavy chains from each of 15 normal individuals showed the presence of VHIII subgroup sequences in all individuals, to an extent of about 15-25% of the total. Therefore, different subgroups of the heavy-chain variable region are not products of alleles of a single gene.N-terminal aminoacid sequences were determined for ten heavy chains of myeloma proteins that belonged to the VHIII subgroup. Our results demonstrate the existence of a "hypervariable" region of sequence between positions 30 and 35, homologous to one of the three hypervariable regions of light chains. At several positions, variants of the basic sequence are repeated in different proteins. It is likely that such variants are derived from several recently evolved genes that constitute the VHIII subgroup.

Amino Acid Sequence

Variable region light chain genes encoding human antibodies to HIV-1.

In previous work, it was found that the heavy chain variable gene (VH) repertoire of human antibodies to HIV is markedly skewed and that the gp120 molecule is a ligand for VH3 gene products. Here, we have analysed the light chain (L-chain) variable region genes (VL) expressed by a panel of human monoclonal antibodies derived from an immunized volunteer, an AIDS patient and seropositive asymptomatic donors, and specific for HIV-1 p25, gp41 and gp120 proteins. We found that, in contrast to VH gene-family use, the VL repertoire does not exhibit a family-bias. We noticed however, a tendency to the use of VL genes that map to the downstream portion of the kappa locus. The VL genes expressed have mutated at lower rates than the corresponding VH genes and show no clustering of the replacement mutations in the hypervariable regions. We also found that the third hypervariable regions (CDR3) of the L-chains have undergone a marked diversification, with addition of untemplated nucleotides, frequent truncation at the 3' end of the VLs and somatic mutation. These molecular events result in a length heterogeneity of the CDR3s and an apparently positive selection of specific highly reactive amino acids. We conclude that the specificity of, at least some of the anti-HIV antibodies, is dictated by the L-chain CDR3 regions which bear the imprints of antigenic selection.

Amino Acid Sequence

Possible conformation of major histocompatibility antigens: implication of amino acid sequence data.

Possible conformation of major histocompatibility antigens was proposed on the basis of homology between domains of major histocompatibility antigen polypeptide chains and domains of immunoglobulins, characterized by a beta-pleated structure. In the hypothetical three-dimensional structure, domains alpha 3 and alpha 2 interact along the chain similarly to the CH2 and CH3 domains of IgG. beta 2-Microglobulin together with domain alpha 2 forms a structure analogous to the CH3--CH3 or CH1--CL dimers in IgG. Domains alpha 2 ans alpha 1 interact in such a manner that the beta-pleated sheet of domain alpha 2 is directly joined to the beta-pleated sheet of domain alpha 1. Hypervariable regions in domains alpha 1 and alpha 2, which most likely take part in the formation of the alloantigen determinants, represent the loops joining the regions of the beta-pleated structure. Domains alpha 1 and alpha 2 may be packed in such a way that their hypervariable regions would become adjacent and would be located on their surface turned aside from the surface of the cell membrane.

Amino Acid Sequence

Characterization of the 5' noncoding and structural region of the hepatitis C virus genome from patients with non-A, non-B hepatitis responding differently to interferon treatment.

We examined 14 patients with hepatitis C caused by infection with the hepatitis C virus-II genotype to understand differences in responsiveness to interferon. The patients were classified into two groups according to their response to interferon: eight responding and six non-responding patients. The 5' noncoding and structural regions of the hepatitis C virus-II genome from each patient specimen were amplified by reverse transcription followed by the polymerase chain reaction. The nucleotide sequences of these amplified DNAs were then determined. By comparing the nucleotide sequences and the deduced amino acid sequences of samples from both groups, no group-specific sequence was observed in the analyzed regions despite the presence of considerable sequence diversity. However, additional cysteine residues were observed in half the responding group. The degree of micro-heterogeneity in hypervariable region 1 of the hepatitis C virus in relation to the sensitivity to interferon treatment was also examined; however, no significant correlation was observed. In addition, frequent alterations in the amino acid sequences were observed in hypervariable region 1 during the course of interferon treatment.

Adolescent