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Identification of a DNA segment in ferret Aleutian disease virus similar to a hypervariable capsid region of mink Aleutian disease parvovirus.

A 401bp DNA fragment of ferret Aleutian disease virus (ADV) was amplified using PCR primers spanning a hypervariable region of mink ADV capsid sequence. The amplified fragment was 88-89% homologous to the same region of previously known sequence of three different strains of mink ADV, however, as low as 54% homology was observed when compared with a 39bp segment known as hypervariable region. Within the predicted 13 amino acid hypervariable region, the ferret ADV sequence differed at 6 positions from the wild type mink Utah1 strain. Three amino acids Gln289, Glu293 and Thr295 in this region were common to the pathogenic ferret ADV, mink Utah1 and ADVK strains, but differed from the cell culture adapted nonpathogenic mink strain ADVG suggesting that these three conserved residues may have some functional significance.

Aleutian Mink Disease Virus↗

Public epitopes and the antigenic structure of the HLA molecules.

Simplified procedures for determining amino acid sequences in proteins and nucleotide sequences in DNA have rapidly expanded the number of MHC molecules for which primary amino acid structure is known. These molecules will be especially valuable as tools to study the structure-function relationships of globular proteins because of the extensive polymorphism of genes coding the MHC genes products. The general three-dimensional structure of class I MHC molecules was recently deduced, but the more subtle topographical microconformations are still undefined. Definition and topographical mapping of epitopes, defined by serological or cellular immune effector products, will be critical probes for these three-dimensional studies. Comparative studies of amino acid sequences among various MHC and molecules have revealed distinct regions of hypervariability in the alpha-1 and -2 domains of class I heavy chains and the alpha-1 and beta-1 domains of most class II molecules. Mutant MHC molecules that differ from each other by no more than one to three amino acids can have structural changes which may result in a loss of the private epitopes that defined the allelic gene product. On the basis of these studies, the private epitopes are thought to be determined by one or more of the hypervariable regions. Similar studies of the relationships between specific regions of the molecule and public epitopes are not fully explored. Because public epitopes are partially conserved structures, one might expect that their structure is not principally determined by hypervariable region. In fact, however, some public epitopes, such as A2/B17 and BW4/Bw6, do map to diversity regions. Epitope mapping as a means of identifying specific topographic sites and relating these sites to specific functional regions of the molecule will be difficult unless the epitopes themselves are better defined. Thus, the capacity to distinguish spatially distinct public epitopes from cross-reactive homologous private epitopes will be important if epitope-specific immunological probes are use to map specific regions of an MHC molecule. Many investigators are interested in the possibility that some components of HLA alloimmunization are regulated through idiotypic networks. Suciu-Foca and colleagues have provided preliminary evidence that epitope-specific HLA alloantibodies bear dominant idiotypic determinants. Antibodies to these determinants appear during pregnancy, following blood tranfusion, and following renal allograft transplantation, also, the antibodies have been correlated with renal allograft survival.(ABSTRACT TRUNCATED AT 400 WORDS)

Antibodies, Monoclonal↗

At least three hepatitis C virus strains implicated in Swedish and Danish patients with intravenous immunoglobulin-associated hepatitis C.

BACKGROUND: Three reported Swedish cases of hepatitis C in patients receiving an intravenous immunoglobulin (Gammagard, Baxter Healthcare, Deerfield, IL) were among the first to bring to light a worldwide outbreak of hepatitis C associated with non-solvent/detergent (SD)-treated Gammagard. In February 1994, all implicated batches of Gammagard were recalled and exposed patients traced. STUDY DESIGN AND METHODS: Sera from all identified and hepatitis C-viremic Swedish and Danish patients (n = 14) exposed to the implicated batches underwent hepatitis C virus genotyping and sequencing of the core region and hypervariable region 1 of E2. Genomic amplification was also done on 15 non-SD-treated batches of Gammagard. RESULTS: Twelve patients were infected with subtype 1a and surprisingly, two with subtype 2b. Analysis of the core region showed identical sequences in four patients and the only consistently positive batch. Five patients shared another sequence, whereas three other subtype 1a patients each manifested unique sequences. The two subtype 2b isolates were identical. Genomic fingerprinting of the hypervariable region confirmed identity within each group with great stringency. Amplification with isolate-specific primers showed mixed infection in one patient whose exposure was confined to a single batch. CONCLUSION: The few batches implicated presumably were contaminated with several strains.

Adolescent↗

Use of a DNA probe in the diagnosis of adult polycystic kidney disease.

Adult polycystic kidney disease (APKD) is one of the most common inherited diseases in man. A diagnosis based on the demonstration of renal cysts with ultrasonography or computerised tomography may be inconclusive in early adulthood, the crucial years before child-bearing is complete. Here we describe the improved diagnostic probability that is possible using genetic linkage studies. A 24-year-old woman, whose father and younger sister were affected by APKD, was demonstrated to have a single cyst in each kidney. These findings were insufficient for a diagnosis of APKD and for this reason genetic linkage studies were undertaken. DNA was extracted from peripheral blood leukocytes from the presenting individual, and her immediate and extended family; the DNA was cut with the restriction enzyme PvuII, electrophoresed in a 0.7% agarose gel and blotted onto nitrocellulose before probing with a 32P-labelled 4 kb fragment. This contained DNA from the hypervariable region (3' hypervariable region, 3'HVR) that is linked to the gene for APKD on the short arm of chromosome 16 and has been used in other family studies by Reeders et al. We correlated the findings on Southern blotting with ultrasound evidence of APKD and found that the disease segregated with a 7.0 kb fragment in the presenting individual's father and sister. She was shown to have inherited this allele also; the use of this technique thus increased the probability of her having APKD from 50% to 96.5%.

Adult↗

Hepatitis G virus/GBV-C persistence: absence of hypervariable E2 region and genetic analysis of viral quasispecies in serum and lymphocytes.

Persistent infection with hepatitis G virus (HGV) or GB virus-C (GBV-C) is common and may last for years. In addition, the principal site of virus replication remains undefined. Sequencing studies of E2 in four patients showed that a hypervariable region equivalent to that of hepatitis C virus (HCV) was absent and that viral quasispecies were less frequent than in HCV infection, particularly with respect to amino acid variation. Recurrence of viraemia following interferon treatment did not result in the emergence of new quasispecies. Virus persistence therefore does not appear to be related to immune escape by strains bearing a hypervariable E2 region. We also investigated whether virus replication occurred in peripheral blood mononuclear cells. The positive-RNA strand of the virus, but no negative strand, was detected in both serum and lymphocytes. The lymphocytes harbouring the virus were CD4 and CD19 positive. Direct sequencing and cloning of amplicons from the region of the non-structural 3 (NS3) protein showed that the nucleotide sequences in lymphocytes were different from those in serum and did not represent any of the minor serum quasispecies. Although evidence of replication in lymphocytes has not been forthcoming, the differences in sequences between serum and lymphocytes suggest that circulating virus originates from a non-hepatic site, other than lymphocytes.

Adult↗

Mitochondrial DNA and STR typing of matter adhering to an earphone.

STR typing and mitochondrial DNA (mtDNA) sequencing were performed on the matter adhering to an earphone found at a crime scene. Experimental studies were carried out using the earphones provided by volunteers. By means of immunohistochemistry, keratinocytes and a portion of nucleated epithelial cells were proven to exist in the contents from the earphones. DNA was extracted by means of the phenol/chloroform method, and the low quantity of extracted DNA was found to be highly degraded. Six STR loci, CSFIPO, TPOX, TH01, F13A01, FESFPS and vWA, were PCR amplified and typed by using two triplex systems (CTT and FFv Multiplexes, Promega, WI), and an amelogenin locus was determined as well. Although partial profiles were observed in some experimental samples, all STR loci could be typed when a considerable amount of high molecular weight DNA was obtained (>0.5 ng/microL). Amplification and sequencing of mtDNA hypervariable region I(15997-16401) and hypervariable region 11(29-408) were all successful. The mitochondrial DNA sequence of the actual case sample, comprising two hypervariable regions and a total of 785 base pairs, showed eight mutations and two insertions with respect to the standard published reference sequence. The genotype was unique in the three published Japanese databases. These results suggest that it is possible to analyze mtDNA from minute amounts of materials and from degraded materials more effectively and routinely in forensic practice.

Cerumen↗

Standard conformations for the canonical structures of immunoglobulins.

A comparative analysis of the main-chain conformation of the L1, L2, L3, H1 and H2 hypervariable regions in 17 immunoglobulin structures that have been accurately determined at high resolution is described. This involves 79 hypervariable regions in all. We also analysed a part of the H3 region in 12 of the 15 VH domains considered here. On the basis of the residues at key sites the 79 hypervariable regions can be assigned to one of 18 different canonical structures. We show that 71 of these hypervariable regions have a conformation that is very close to what can be defined as a "standard" conformation of each canonical structure. These standard conformations are described in detail. The other eight hypervariable regions have small deviations from the standard conformations that, in six cases, involve only the rotation of a single peptide group. Most H3 hypervariable regions have the same conformation in the part that is close to the framework and the details of this conformation are also described here.

Binding Sites↗

Complete amino acid sequence of the variable domains of two human IgM anti-gamma globulins (Lay/Pom) with shared idiotypic specificities.

On the basis of extensive shared idiotypic specificities, two human IgM anti-gamma-globulins (Lay/Pom) were selected for complete amino acid sequence analysis of their variable domains. Previous studies on the variable regions of the heavy chains of these proteins had shown but eight amino acid differences, only one of which was within a complementarity-determining hypervariable region. The complete amino acid sequence of the variable regions of the light chains of these two proteins is the subject of this report. Protein Lay is a typical VchiI protein with only five 'framework' differences when compared with protein Roy. Protein Pom is best classified as a VchiII, but in the 'framework' there are 16 differences between it and protein Ti. Although there are extensive differences in the first hypervariable region, the second and third light-chain hypervariable regions have an identical sequence. The finding of two identical light-chain and two identical heavy-chain hypervariable regions in these two proteins, which were selected on the basis of their combining specificities and their idiotypic cross-reactions, strongly implicates hypervariable regions in the constitution of the idiotypic determinants and the antibody combining site. Additionally, the finding of identical hypervariable regions in light chains of different V-region subgroups fulfills a prediction of the gene-interaction concept of antibody variability.

Amino Acid Sequence↗

Influence of viral quasispecies on effectiveness of interferon therapy in chronic hepatitis C patients.

The quasispecies nature of hepatitis C virus genome distribution is most evident in hypervariable regions of the putative envelope 2 domain. Eight patients with chronic hepatitis C treated with interferon-alpha were studied as to heterogeneity of the hypervariable regions to clarify the implications of quasispecies. More than 10 recombinant clones generated from polymerase chain reaction-amplified products of the hypervariable regions were sequenced. The sets of clones derived from long-term responders before interferon therapy showed a significantly lower (p < 0.05) degree of sequence complexity of the hypervariable region 1 quasispecies than those from short-term ones or non-responders. The values of nucleotide diversity (the average number of nucleotide differences per site between two randomly chosen sequences) in hypervariable region 1 before interferon therapy were also significantly lower (p < 0.05) for long-term responders (mean, 2.31 x 10(-2)). In some cases, nucleotide diversity decreased remarkably during interferon therapy, whereas the values remained unchanged in other cases. In one interesting case, a short-term response was first noted with the nucleotide diversity decreasing from 13.98 x 10(-2) to 0.21 x 10(-2); namely, the diversity of the quasispecies was significantly reduced, and then a long-term response was observed after an additional course of interferon therapy. Thus, the degree of quasispecies' complexity and diversity of hypervariable region 1 was closely correlated with the responsiveness to interferon therapy in chronic hepatitis C patients, and thus may have some influence on interferon efficacy.

Adult↗

Characterization of a class II pilin expression locus from Neisseria meningitidis: evidence for increased diversity among pilin genes in pathogenic Neisseria species.

Strains of Neisseria meningitidis elaborate one of two classes of pili. Meningococcal class I pili have many features in common with pili produced by N. gonorrhoeae, including the ability to bind monoclonal antibody SM1 and a common gene and protein structure consisting of conserved, semivariable, and hypervariable regions. Class II pili are SM1 nonreactive and display smaller subunit molecular weights than do gonococcal or meningococcal class I pili. In this study, we have determined the N-terminal amino acid sequence for class II pilin and isolated the expression locus encoding class II pilin from N. meningitidis FAM18. Meningococcal class II pilin displays features typical of type IV pili and shares extensive amino acid identity with the N-terminal conserved regions of other neisserial pilin proteins. However, the deduced class II pilin sequence displays several unique features compared with previously reported meningococcal class I and gonococcal pilin sequences. Class II pilin lacks several conserved peptide regions found within the semivariable and hypervariable regions of other neisserial pilins and displays a large deletion in a hypervariable region of the protein believed to be exposed on the pilus face in gonococcal pili. DNA sequence comparisons within all three regions of the coding sequence also suggest that the meningococcal class II pilin gene is the most dissimilar of the three types of neisserial pilE loci. Additionally, the class II locus fails to display flanking-sequence homology to class I and gonococcal genes and lacks a downstream Sma/Cla repeat sequence, a feature present in all other neisserial pilin genes examined to date. These data indicate meningococcal class II pili represent a structurally distinct class of pili and suggest that relationships among pilin genes in pathogenic Neisseria do not necessarily follow species boundaries.

Amino Acid Sequence↗

Rare sequence motifs are common constituents of hypervariable antibody regions.

An analysis of the amino acid sequences of variable regions of human and mouse antibody molecules was performed. It involved comparison of their constituent tetrapeptides with those found in a reference set (the somatic self) built with non-immunological proteins found in a protein data base. It appeared that hypervariable regions, particularly CDR1 and CDR3, are often made up of rare tetrapeptides not present in the reference set. As assessed by simple statistical tests, this bias was significant. We discuss its possible connection with the problem of antibody immunogenicity. This result provides indirect support for the existence of idiopeptides predicted by the "peptidic self model".

Amino Acid Sequence↗

Identification of remains by sequencing of mitochondrial DNA control region.

The maternity of two newborns who were murdered and abandoned >5 and 10 years were analyzed by amplification and direct sequencing of mitochondrial DNA (mtDNA) control regions. Sequences of two hypervariable segments from each femur bone sample and the blood of the putative mother showed four mutations in hypervariable region I and two mutations in addition to two nucleotide insertions in hypervariable region II compared with the reference sequence, and all sequences were identical. The genotype of these individuals is found to be relatively rare in the Japanese population, and it was strongly suggested that both sets of newborn remains really were children of the putative mother. Sexes of the remains were determined to be female and male by amplifying a segment of the X-Y homologous gene, amelogenin. These results demonstrate that sequencing of mtDNA is a useful tool for genetic identification of aged and decomposed materials.

Amelogenin↗

Structure of antibodies with shared idiotypy: the complete sequence of the heavy chain variable regions of two immunoglobulin M anti-gamma globulins.

The complete amino acid sequence of the heavy chain variable regions of two different molecules of immunoglobulin M anti-gamma globulin has been determined. These proteins, from different human patients, had independently been shown to share idiotypic specificity. Only eight sequence differences were discernible for the entire length of their heavy chain variable regions. Five of the differences occurred outside hypervariable regions, while three were placeable within such regions. A comparison of these molecules of anti-gamma globulin with the seven human V(H)III variable region sequences presently available for immunoglobulins without known antibody activity showed that the great majority of sequence differences between the two idiotypically similar antibodies and these seven proteins were confined to hypervariable regions. This study illustrates in precise terms a convergence of the distinct immunological properties of idiotypy, hypervariable region structure, and combining site specificity as they relate to the variable region of the immunoglobulin molecule. To a great degree these properties now appear to be a reflection of the same structural attributes of the variable region.

Amino Acid Sequence↗

Host dependent variation of hepatitis C virus: phylogenetic analyses.

Hepatitis C virus quasispecies in six patients from three families were separated by single strand conformation polymorphism analysis and by determination of nucleotide sequences of envelope regions containing the E1 gene segment and hypervariable region-1 of each quasispecies. Four of the six patients had multiple quasispecies. Phylogenetic analyses indicated that all quasispecies from one individual were highly homologous to each other. The homology was higher in the E1 gene segment than in hypervariable region-1. Furthermore, all quasispecies found in members of one family (husband and wife) were also highly homologous, suggesting direct intrafamilial transmission. The direction of hepatitis C virus variation in hypervariable region-1, however, seems to differ depending on the host in intrafamilial transmission.

Adolescent↗

Use of the asymmetric polymerase chain reaction and DNA sequencing to determine genetic variability of bean golden mosaic geminivirus in the Dominican Republic.

A combination of the polymerase chain reaction (PCR), asymmetric PCR (A-PCR) and DNA sequencing was used to determine the nucleotide sequence of a hypervariable region of the bipartite genome of bean golden mosaic geminivirus (BGMV). This region, which was part of the intergenic region of the DNA-B component, was amplified using primers designed from the nucleotide sequence of a DNA-B component clone (pDRB1) of an isolate of BGMV from the Dominican Republic (BGMV-DR). pDRB1 is infectious on beans when coinoculated with the DNA-A component of BGMV-DR (pDRA1), and typical bean golden mosaic symptoms are observed on infected plants. Bean leaf tissue infected with BGMV was collected at five separate field locations in the Dominican Republic and the hypervariable region was amplified by PCR, ssDNA was produced using A-PCR, and partial nucleotide sequences were determined. The sequences of the hypervariable region from the field-collected samples ranged from 95% (one sample) to 98% (four samples) identical to the sequence of pDRB1. This contrasts with sequence identities of 86, 75 and 46% between the pDRB1 hypervariable region and the hypervariable regions of BGMV isolates from Guatemala, Puerto Rico and Brazil respectively, and 42% with bean dwarf mosaic geminivirus. These results indicate that Dominican Republic isolates of BGMV are very similar and should be considered isolates of the same virus (BGMV-DR), and that the infectious clones of BGMV-DR are representative of BGMV isolates in the Dominican Republic. The procedures described for DNA extraction from leaf tissue and for production of high quality ssDNA using PCR and A-PCR are rapid and efficient and could be applied to studies of variability and epidemiology of other viruses.

Base Sequence↗

Adaptation of hepatitis C virus for persistent infection in patients with acute hepatitis.

Nucleotide sequencing was used to analyze amino acid substitutions in the putative envelope 1 (E1) and envelope 2/nonstructural 1 (E2/NS1) regions of hepatitis C virus (HCV) to clarify a viral mechanism of persistent infection in three patients with acute hepatitis C who developed chronic hepatitis and two patients with chronic hepatitis. The HCV RNA titer in serum decreased markedly after the onset of acute hepatitis and then re-elevated. During this period, the substitution rate in the E2/NS1 region (especially in the hypervariable region located in the N-terminus) was significantly higher in patients with acute hepatitis than in patients with chronic hepatitis (P < 0.05). When patients with acute hepatitis C became persistent HCV carriers, the substitution rate decreased to the level seen in patients with chronic hepatitis. The amino acid substitution rate in the E1 region in the acute phase was similar to that found in the chronic HCV carrier state. These observations suggest that rapid substitution of the amino acid sequence in the hypervariable region of the E2/NS1 region may be one of the mechanisms of persistent HCV infection.

Acute Disease↗

Diversity of light chain variable region sequences among rabbit antibodies elicited by the same antigens.

We report the complete variable region sequences of three homogeneous rabbit antibody light chains and the partial sequences of five others. Wehn these are compared to other published rabbit light chain sequences, two regions of markedly increased variability are revealed, which are homologous in position to the first and third hypervariable regions of murine and human myeloma light chains. In addition, there is increased variability among the first three residues at the aminoterminal end. A hypervariable region homologous to that identified at positions 50 to 56 in myeloma light chains is not present in these rabbit antibody light chains. The available three-dimensional models of Fab fragments based on x-ray crystallography indicate that neither the amino-terminal portion of the light chain nor the region homologous to positions 50 to 56 forms a part of the combining site. Comparison of the hypervariable regions among six light chains from antibodies to Type III pneumococcal polysaccharide and among four from antibodies to Type VIII pneumococcal polysaccharide suggests that a large number of different sequences may be found in antibodies specific for these relatively simple antigens. Certain residues outside of the hypervariable regions are invariant in the rabbit light chains and correspond to residues that are required for proper chain folding in human and murine myeloma light chains, indicating that the general conformation of myeloma light chains is the same as that of light chains of elicited antibodies.

Amino Acid Sequence↗

Characterization of the structural-protein-coding region of SAT 2 type foot-and-mouth disease virus.

The South African Territories (SAT) types of foot-and-mouth disease (FMD) virus show marked genomic and antigenic variation in sub-Saharan Africa that is to a large extent geographically determined. This has implications for selection of appropriate vaccine strains as well as the accuracy of laboratory diagnosis. However, adaptation of field isolates as vaccine strains is cumbersome, time consuming and expensive. We propose the construction of recombinant viruses in which specific antigenic determinants can be manipulated. To achieve this goal, the structural-protein-coding region of a SAT 2 vaccine strain, ZIM 7/83/2, was determined and compared with two other known SAT 2 P1 regions. Five hypervariable regions were identified of which four are situated within VP1. The cleavage sites for proteolytic processing differs from serotype A, while the junction between P1/2A is variable within the SAT 2 serotype. These differences could influence the construction of recombinant vaccines.

Amino Acid Sequence↗