Search PubMed⌕ Search

SEARCH · Search PubMed

Results for “hypervariable regions”

Search indexed PubMed citations on genomics, clinical trials, systematic reviews and public health. Explore titles, authors and supplied subject terms, then open the PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 991 records · Page 55Linked to original sources

Ileal symbiont intracellularis, an obligate intracellular bacterium of porcine intestines showing a relationship to Desulfovibrio species.

A new genus and species of obligate intracellular-bacteria found in porcine intestines are described. Growth on any bacteriological medium deprived of living cells has not been demonstrated. The organism has been grown intracellularly in cell culture. The 16S rRNA gene sequence data, DNA probe results, and microscopic observations provide evidence that these bacteria differ from those in other described genera and that they belong to the delta subdivision of the class Proteobacteria. We have amplified and sequenced the 16S ribosomal DNA of four preparations of the intracellular bacterium from pigs. For this, intracellular organisms were released and purified from the infected cells without culture techniques. After DNA purification, the polymerase chain reaction with primers complementary to highly conserved eubacterial sequences was used to amplify regions of 16S ribosomal DNA which were subsequently cloned (in some cases) and sequenced directly by standard techniques. The sequences obtained from each preparation were identical and were most similar to that of a sulfate-reducing proteobacterium, Desulfovibrio desulfuricans ATCC 27774 (91% similarity). An oligonucleotide probe complementary to a hypervariable region of the 16S rRNA sequence of the bacterium hybridized with intracellular organisms obtained from porcine intestines. The bacterium is a gram-negative, curved rod with tapered ends. It multiplies intracellularly in the cytoplasm of ileal epithelial cells by septation. The vernacular name Ileal symbiont (IS) intracellularis is proposed for this bacterium. The type strain of IS intracellularis is strain 1482/89 grown in cell culture from a pig affected by proliferative enteropathy. It is deposited in the National Collection of Type Cultures, Colindale, London, as NCTC 12656.

Animals↗

Intraspecific nucleotide sequence differences in the major noncoding region of human mitochondrial DNA.

Nucleotide sequences of the major noncoding region of human mitochondrial DNA (mtDNA) from 95 human placentas have been determined. These sequences include at least a 482-bp-long region encompassing most of the D-loop-forming region. Comparisons of these sequences with those previously determined have revealed remarkable features of nucleotide substitutions and insertion/deletion events. The nucleotide diversity among the sequences is estimated as 1.45%, which is three- to fourfold higher than the corresponding value estimated from restriction-enzyme analysis of whole mtDNA genome. A hypervariable region has also been defined. In this 14-bp region, 17 different sequences were detected. More than 97% of the base changes are transitions. A significantly nonrandom distribution of nucleotide substitutions and sequence length variations were also noted. The phylogenetic analysis indicates that diversity among the negroids is much larger than that among the caucasoids or the mongoloids. In fact, part of the negroids first diverged from other humans in the phylogenetic tree. A striking finding in the phylogenetic analysis is that the mongoloids can be separated into two distinct groups. Divergence of part of the mongoloids follows the earliest divergence of part of the negroids. The remainder of the mongoloids subsequently diverged together with the caucasoids. This observation confirmed our earlier study, which clearly demonstrated, by the restriction-enzyme analysis, existence of two distinct groups in the Japanese.

Base Sequence↗

Individual-specific 'fingerprints' of human DNA.

Simple tandem-repetitive regions of DNA (or 'minisatellites') which are dispersed in the human genome frequently show substantial length polymorphism arising from unequal exchanges which alter the number of short tandem repeats in a minisatellite. We have shown previously that the repeat elements in a subset of human minisatellites share a common 10-15-base-pair (bp) 'core' sequence which might act as a recombination signal in the generation of these hypervariable regions. A hybridization probe consisting of the core repeated in tandem can detect many highly polymorphic minisatellites simultaneously to provide a set of genetic markers of general use in human linkage analysis. We now show that other variant (core)n probes can detect additional sets of hypervariable minisatellites to produce somatically stable DNA 'fingerprints' which are completely specific to an individual (or to his or her identical twin) and can be applied directly to problems of human identification, including parenthood testing.

DNA Restriction Enzymes↗

Diversity and rearrangement of the human T cell rearranging gamma genes: nine germ-line variable genes belonging to two subgroups.

We describe nine T cell gamma variable (V) gene segments isolated from human DNA. These genes, which fall into two subgroups, are mapped in two DNA regions covering 54 kb and probably represent the majority of human V gamma genes. One subgroup (V gamma I) contains eight genes, consisting of four active genes and four pseudogenes. The single V gamma II gene is potentially active. Sequence analysis of the V gamma I genes shows variation clustered in hypervariable regions, but somatic variability is restricted to N-region diversity. Studies on rearrangement in T cell lines and in thymic DNA show that major rearrangements can be observed that are attributable to the five active V gamma genes. In addition, human cells with the phenotype of helper T cells can undergo productive V gamma-J gamma joining.

Bacteriophage lambda↗

Are idiotypic peptides from variable domains critical for T-dependent production of rheumatoid factors?

Studies from this laboratory have indicated that isologous myeloma protein 315 (M315, isotype IgA, lambda 2) elicits T helper cells which recognize processed forms (peptides) of its V-domains and that recognition is controlled by H-2 linked immune-response (Ir) genes (J Exp Med 1982; 155:1587-96; Eur J Immunol 1986; 16:889-93). We now report that adjuvant-free soluble M315, particularly the mildly reduced and alkylated form, stimulates a T-dependent antibody response mainly specific for M315's paired V-domains. A small subset of the antibodies appeared to recognize the C-region of IgA, thus being analogous to rheumatoid factors (RF). On the basis of these observations, we propose that one pathway to RF production depends on T helper cells that interact directly with RF-producing B cells across peptide-MHC bridges. These peptides are envisaged to be derived from hypervariable regions of IgG V-domains, and they are therefore called "idiotypic peptides". This hypothesis assumes that the number of different idiotypic peptides is so large that the immune system has not developed tolerance to all of them.

Alkylation↗

The majority of human monoclonal IgM rheumatoid factors express a "primary structure-dependent" cross-reactive idiotype.

Genetic studies of human immunoglobulin variable regions have been hampered by the lack of anti-idiotypic antibodies that recognize specific heavy and light chain variable region sequences. Sixty percent of human monoclonal IgM anti-IgG autoantibodies (rheumatoid factors [RF]) from unrelated individuals share a cross-reactive idiotype (CRI) termed Wa. In previous experiments in which we used an enzyme-linked immunosorbent assay, we reported that a synthetic peptide (PSL2), corresponding to the second hypervariable region in the kappa light chain of a monoclonal IgM-RF (Sie), induced rabbit antibodies reactive with several RF paraproteins. In the present experiments, to avoid interference due to the human IgM-RF binding toward rabbit IgG, the reactivity of the anti-PSL2 antibody to the separated heavy and light chains of multiple IgM proteins and Bence-Jones proteins was assessed by the Western blot technique. The PSL2-induced anti-CRI reacted well with the separated kappa chains from 10 out of 12 IgM-RF, zero out of four light chains from IgM proteins lacking anti-IgG activity, and one out of six kappa Bence-Jones proteins. The results show that the PSL2-CRI is associated with RF and is not a kappa subgroup marker. Furthermore, a comparison of the reported light chain sequences of the PSL2-CRI-positive IgM-RF suggests that the majority of human IgM-RF light chains derive from a single germ-line VK gene or from a family of closely related VK genes that is highly conserved in the human population. Synthetic peptide-induced anti-CRI provide a potent tool for analyzing the genetic basis of CRI and abnormal autoantibody production in humans.

Amino Acid Sequence↗

Immunization with a synthetic T-cell receptor V-region peptide protects against experimental autoimmune encephalomyelitis.

T cells expressing the alpha beta T-cell receptor (TCR) for antigen can elicit anti-idiotypic antibodies specific for the TCR that regulate T-cell function. Defined sequences of the TCR, however, have not been used to elicit specific antibodies and the role of cellular immunity directed against TCR determinants has not been studied. We immunized Lewis rats with a synthetic peptide representing a hypervariable region of the TCR V beta 8 molecule. Subsequent induction of experimental autoimmune encephalomyelitis, a paralytic disease of the central nervous system mediated primarily by V beta 8+ T cells specific for myelin basic protein was prevented. T cells specific for the TCR V beta 8 peptide conferred passive protection against the disease to naive rats, apparently by shifting the predominant T-cell response away from the major encephalitogenic epitope of basic protein. This is the first report demonstrating the use of a synthetic TCR V-region peptide to induce specific regulatory immunity and has important implications for the regulation of human disease characterized by common TCR V-gene usage.

Animals↗

Molecular cloning and analysis of functional envelope genes from human immunodeficiency virus type 1 sequence subtypes A through G. The WHO and NIAID Networks for HIV Isolation and Characterization.

Present knowledge of human immunodeficiency virus type 1 (HIV-1) envelope immunobiology has been derived almost exclusively from analyses of subtype B viruses, yet such viruses represent only a minority of strains currently spreading worldwide. To generate a more representative panel of genetically diverse envelope genes, we PCR amplified, cloned, and sequenced complete gp160 coding regions of 35 primary (peripheral blood mononuclear cell-propagated) HIV-1 isolates collected at major epicenters of the current AIDS pandemic. Analysis of their deduced amino acid sequences revealed several important differences from prototypic subtype B strains, including changes in the number and distribution of cysteine residues, substantial length differences in hypervariable regions, and premature truncations in the gp41 domain. Moreover, transiently expressed glycoprotein precursor molecules varied considerably in both size and carbohydrate content. Phylogenetic analyses of full-length env sequences indicated that the panel included members of all major sequence subtypes of HIV-1 group M (clades A to G), as well as an intersubtype recombinant (F/B) from an infected individual in Brazil. In addition, all subtype E and three subtype G viruses initially classified on the basis of partial env sequences were found to cluster in subtype A in the 3' half of their gp41 coding region, suggesting that they are also recombinant. The biological activity of PCR-derived env genes was examined in a single-round virus infectivity assay. This analysis identified 20 clones, including 1 from each subtype (or recombinant), which expressed fully functional envelope glycoproteins. One of these, derived from a patient with rapid CD4 cell decline, contained an amino acid substitution in a highly conserved endocytosis signal (Y721C), as mediated virus entry with very poor efficiency, although they did not contain sequence changes predicted to alter protein function. These results indicate that the env genes of primary HIV-1 isolates collected worldwide can vary considerably in their genetic, phylogenetic, and biological properties. The panel of env constructs described here should prove valuable for future structure-function studies of naturally occurring envelope glycoproteins as well as AIDS vaccine development efforts targeted against a broader spectrum of viruses.

Amino Acid Sequence↗

Genomic diversity and organization of virulence genes in the pathogenic anaerobe Clostridium perfringens.

Pulsed-field gel electrophoresis has been used to assess genomic diversity and to identify virulence regions in 10 strains, representing all five serotypes, of the anaerobic pathogen Clostridium perfringens. Detailed physical and gene maps of the approximately 3.6 Mb circular chromosomes have been established in eight cases and used to deduce a consensus map. With one exception the chromosomal arrangement was relatively constant and map comparison allowed three hypervariable regions to be identified. One of these was associated with the enterotoxin gene, cpe, which is an important cause of human diarrhoea following the ingestion of food contaminated with C. perfringens. Another variable region spanning the major virulence gene plc, which encodes the cytolytic toxin, alpha, was located near oriC in all cases whereas the gene for another lethal typing toxin, epsilon, was borne by an episome. It now seems likely that the serological variations, and the changes in the pathogenic spectrum which constitute the C. perfringens typing system, may be due entirely to the loss, or acquisition, of extrachromosomal genetic elements.

Chromosome Deletion↗

Hypervariable genomic variation to reconstruct the natural history of populations: lessons from the big cats.

The extent and nature of variation in hypervariable regions DNA have been used in the past as a means to infer the natural histories of populations. We review the interpretation of the extent of genetic diversity for minisatellite DNA in the cheetah to estimate the timing of a population bottleneck in the species and the potential application of a second class of hypervariable DNA, microsatellite DNA, as a molecular tool to examine the natural histories of felid populations. A calibration curve relating the degree of allele fragment sharing in individuals to relatedness in a captive pedigree of cheetahs is presented. This measurement has important applications for management of potential matings in captive management situations.

Acinonyx↗

Cyanobacteria from Brazilian building walls are distant relatives of aquatic genera.

The 16S-rDNA from 22 cyanobacteria isolated from biofilms on walls of modern and historic buildings in Brazil was partially sequenced (approximately 350 bp) using specific primers. The cyanobacteria with the closest matching sequences were found using the BLAST tool. The sequences were combined with 52 other cyanobacterial sequences already deposited in public data banks and a dendrogram constructed, after deletion from each sequence of one of the variable 16S rDNA regions (VI). The newly sequenced organisms fitted well within their respective families, but their similarities to other members of the groups were generally low, less than 96%. Close matches were found only with one other terrestrial (hot dry desert) cyanobacterium, Microcoleus sociatus, and with Anabaena variabilis. Phylogenetic analysis suggested that the deletion of the hypervariable regions in the RNA structure is essential for meaningful evolutionary studies. The results support the standard phylogenetic tree based on morphology, but suggest that these terrestrial cyanobacteria are distant relatives of their equivalent aquatic genera and are, indeed, a distinct population.

Algorithms↗

Persistent infection mechanism of GB virus C/hepatitis G virus differs from that of hepatitis C virus.

OBJECTIVE: Changes in the deduced amino acid sequence of the envelope 2 (E2) region of the GB virus C/hepatitis G virus (GBV-C/HGV) were analyzed to investigate whether or not the region contributes to persistent infection with the virus. METHODS: Eight patients with acute hepatitis C and 1 patient with acute hepatitis of unknown etiology were included in the study. GBV-C/HGV RNA was detected in 6 patients, including the patient with hepatitis of unknown origin. The nucleotide sequence of the E2 region of hepatitis C virus (HCV) and GBV-C/HGV was determined by direct sequencing of polymerase chain reaction products in 5 patients with HCV infection and in 6 patients with GBV-C/HGV infection twice during the period of early infection and several months or years later in each patient. RESULTS: The mean substitution rate of the deduced amino acid sequence in the E2 region was over 100 times lower (p < 0.001) in GBV-C/HGV (0.01 +/- 0.04/month/100 sites) than in HCV (2.4 +/- 1.7/month/100 sites). The amino acid sequence of the loop domain of GBV-C/HGV-E2 did not change in any of the 6 patients. On the other hand, the sequence of the hypervariable region of HCV-E2 changed remarkably (5.9 +/- 4.3/month/100 sites). No amino acid substitution in the loop domain was observed in 7 additional patients who showed persistent GBV-C/HGV viremia for more than 2 years. CONCLUSION: These results indicate that changes in the amino acid sequence of the E2 region are not involved in the mechanism of persistent GBV-C/HGV infection.

Acute Disease↗

[Allelic polymorphism of the DNA-loci met and D7S23, linked to the mucoviscidosis gene in human populations of the Volga-Ural region].

Data on allelic polymorphism of MET and D7S23 DNA loci linked to the human cystic fibrosis gene studied in three Bashkir ethnic groups and some Volga-Ural populations (Tartars, Maris, Mordovians, Udmurts, Chuvashs, and Komis) are presented. Udmurts were found to be substantially different from Bashkirs, Tartars, Mordovians, and Chuvashs by the allele frequency distribution observed for MET, while Komis and Bashkirs differed by this parameter from Mordovians and Maris. Comparative analysis of restriction fragment length polymorphism (RFLP) at the D7S23 locus revealed statistically significant differences in genotype frequencies between Bashkirs of the Arkhangel' skii region and populations of Mordva and Udmurtia. In this respect, the Mordovian population appeared to be notably different from the populations of Bashkortostan, Tatarstan, Marii-El, Udmurtiya, Chuvashiya, and Komis. Genetic distances were calculated and corresponding dendrograms were constructed on the basis of data on Met-H, CS.7, and the ApoB locus hypervariable region allelic frequencies. Three ethnogeographic Bashkir groups belonging to one tree branch were found to be closely related to the populations of Tartars, Maris, Udmurts, and Chuvashs and substantially different from Komis and Mordovians. Thus, the position of Volga-Ural populations on the dendrogram corresponds to the degree of relationship between the Finno-Ugric and Turkic populations, confirming the usefulness of DNA polymorphism analysis for the study of the genetic structure of populations.

Alleles↗

Polymorphic locus in the 5'-flanking region of human insulin gene and non-insulin-dependent diabetes mellitus.

The etiology of non-insulin-dependent diabetes mellitus (NIDDM) is still unclear, but appears to involve some genetic factors. There have been disputes over the association between DNA sequences flanking the insulin gene and NIDDM. In order to characterize insulin gene polymorphism in the Chinese population and elucidate its association with NIDDM, 100 unrelated Chinese subjects living in Taiwan were observed for polymorphism of this hypervariable region. Most of them were descendants of immigrants from the southern part of mainland China. Among them, 52 were nondiabetic controls, and 48 were subjects with NIDDM. Insulin gene polymorphism was classified into classes 1, 2 and 3 alleles according to Bell et al. Neither the class 2 allele nor the genotype for the homozygous class 3 allele was not observed in this study. The allelic frequencies of class 1 and 3 genes were 97% and 3% in the nondiabetic subjects, and 99% and 1% in the NIDDM group, respectively. The frequencies of genotypes 1/1 and 1/3 were 94% and 6% in nondiabetics and 98% and 2% in the NIDDM group, respectively. No significant association was found between insulin gene polymorphism and NIDDM. It is concluded that DNA marker flanking the insulin gene may not be associated with the development of NIDDM in Chinese subjects.

Adult↗

Proteolytic dissection of a hapten binding site.

IgG Gar, a human myeloma protein that binds riboflavin with a high affinity, was used to derive variable region fragments from the heavy chain and the light chain. Riboflavin binding ability of the active site generated by V(H) and light chain and the active site generated by V(H) and V(L) was compared to riboflavin binding by the F(ab) fragment. The riboflavin binding ability of the F(ab) fragment is the same as the intact molecule, while the binding ability of the active site formed by V(H) and light chain is lowered by two to three orders of magnitude, indicating that the removal of C(H1) domain decreases the interaction between riboflavin and the amino acids that is important in tight binding of riboflavin. Removal of the third hypervariable region and the constant region domain from the light chain further lowers the binding constant by one order of magnitude. The results indicate that the V(H) and V(L) segments of IgG Gar can reconstitute a riboflavin binding site. The decrease in affinity probably reflects a decrease in the rigidity with which the hypervariable loops are held together to place the contact amino acid residues in optimal contact with the hapten.

Binding Sites, Antibody↗

Functional and molecular characterization of I-A kappa beta mutants is consistent with the predicted three dimensional structure of class II MHC molecules.

Class II MHC (Ia) molecules have been shown to be critical as restriction elements in the T helper/inducer cell recognition of antigen. Efforts to determine the role of allelic variation in MHC restricted antigen presentation have included the use of serologically selected mutants to correlate structural variations in Class II molecules with changes in the antigen presenting function of Ia bearing cells. Such studies have revealed that serologically selected mutations tend to occur in a single immunodominant region and that even a single amino acid substitution can alter T cell recognition of Ia molecules. We report here the characterization of two more serologically selected Class II A beta chain mutations. Each is due to a single base change which alters a single amino acid. One of these mutations is in the third hypervariable region (amino acid 64--glutamine to arginine) and alters the antigen presenting function. The second mutation at amino acid 48, though a relatively non-conservative change (arginine to cysteine), has no effect on APC phenotype. Such a result would be predicted based on comparisons made with the proposed three dimensional crystallographic structure of Class I molecules and models proposed for Class II molecules based on Class I structure. The amino acid change at position 48 is in a portion of the molecule that is most likely unavailable to bind antigen or interact with T cell receptor whereas the mutation at amino acid 64 is on an exposed face of the alpha helix, a region which could affect interaction with either antigen and/or the T cell receptor.

Amino Acid Sequence↗

Comparative analysis of amino acid sequences from envelope proteins isolated from different hepatitis C virus variants: possible role of conservative and variable regions.

Sequences of the E1 and E2 envelope proteins of hepatitis C virus (HCV) (827 non-identical items) were collected from available sources and aligned. Analysis of the alignment identified regions with different sequence variability. It was found that 33% and 50% of positions within E1 and E2, respectively, were highly conservative. Such conservation can be considered as the minimum for maintaining stability of the three-dimensional structure and function of these proteins. Conserved cysteines in E1 and E2 (eight and 18 residues, respectively) were presumed to form intramolecular disulphide bonds. Both envelope proteins were predicted to contain 14 conservative glycosylation sites. Two additional glycosylation sites were predicted in 58% of E1 and 30% of E2 sequences within the corresponding regions. We describe the positions of six conservative regions in E1 and E2, which have several charged and aromatic residues known to participate frequently in protein-protein recognition. Peculiarities in the amino acid content of conservative fragments and putative differences in glycosylation were considered with regard to antigenic specificity and possible binding to surface structures of target cells. We also analysed the hypervariable region 1 (HVR1), located in the E2 protein. Aligned positions of HVR1 were described in relation to the maintenance of conformational stability and recognition of cell receptors.

Amino Acid Sequence↗

Identification and sequence of the VH gene elements encoding a human anti-DNA antibody.

Antibodies to DNA similar to those found in patients with systemic lupus erythematosus (SLE) and autoimmune mice can be derived from the lymphocytes of normal individuals. It is not known whether these normal derived anti-DNA antibodies are made from the same VH gene elements as the anti-DNA antibodies made by SLE patients. To begin to answer this question, we examined mu chain cDNA clones from human hybrid clone C6B2 producing anti-DNA antibodies. The sequence of the 500 base pair restriction fragment containing the variable region (5' terminus) was determined and was sequenced. This antibody uses a VHII heavy chain subgroup gene, a J3 joining segment, a hitherto unknown D segment, and a previously reported leader sequence. Significant homology was found to a mouse anti-DNA antibody sequence in the use of VH subgroup in J3, and in the hypervariable regions with a shared Ser-Tyr construction in CDR1 and an identical five amino acid residue stretch in CDR2. Comparison with the limited sequence data of published SLE monoclonal anti-DNA antibodies, both human and mouse, suggests that this shared Ser-Tyr may be important in some but not all antibodies to DNA. Comparison of C6B2 antibody is made with other known antibody sequences with identification of those residues likely to be part of the antigen binding site.

Amino Acid Sequence↗