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Detection of a high-frequency silent polymorphism (C-->T) in the kir2.1 (KCNJ2) inwardly rectifying potassium channel gene by polymerase chain reaction and single strand conformation polymorphism.

The aim of this work was to determine the frequency of a base substitution (C-->T) identified in the Kir2.1 gene (approved gene symbol: KCNJ2; OMIM number: 600681). Polymerase chain reaction (PCR) of the area of the Kir2.1 gene containing this substitution was performed on 52 genomic DNA samples. Using single strand conformation polymorphism (SSCP) analysis, the genotype and allele frequencies were subsequently determined and the polymorphism identified in this study was verified by cycle sequencing. The data demonstrate that the C-->T nucleotide change identified corresponds to a silent polymorphism with a relatively high frequency. The deduced genotype frequencies of homozygotes and heterozygotes were: C/C: 73%; T/T: 2% and C/T: 25%. The deduced allele frequencies were C: 85.6% and T: 14.4%.

DNA↗

Single-strand conformational polymorphisms (SSCP): detection of useful polymorphisms at the dystrophin locus.

We searched for DNA polymorphisms in seven amplified fragments of the dystrophin gene. Three fragments exhibited variable mobilities during nondenaturing strand-separating gel electrophoresis (SSGE). These variants were due to single base changes (three transversions and one transition). Three were intronic (upstream from exons 17, 15, and 48) and one was in exon 48. The frequencies of these sequence variants were determined in a sample of 54 normal X chromosomes of Caucasian origin. One of these DNA polymorphisms was observed in every 650 bp tested and the average heterozygosity was 0.05% per base pair (0.08% if exons were excluded). Such a detection density and the fact that single-strand conformational polymorphisms do not depend on the presence of any specific sequence makes them especially valuable as genetic markers. In the dystrophin locus this approach could allow simultaneous detection of frequent deletions.

DNA, Single-Stranded↗

A single base pair polymorphism in the WT1 gene detected by single-strand conformation polymorphism analysis.

The Wilms' tumor predisposition gene, WT1, was analysed exon-by-exon in a variety of tumours using the single-strand conformation polymorphism (SSCP) technique. A consistent variation in the usual band pattern for exon 7 was detected in this survey. On sequencing, a silent mutation was noted in codon 313 resulting in an A-->G transition in an arginine codon. The A-->G transition destroys an AflIII restriction enzyme recognition site, which provides a rapid means of identifying heterozygotes at this locus. Analysis of the segregation of this polymorphism in families demonstrated a co-dominant inheritance pattern. In an analysis of 21 randomly selected individuals 25% were heterozygous at this locus, which makes this polymorphism useful in a variety of genetic analyses.

Base Sequence↗

Human chromosomal polymorphism. III. Chromosomal Q polymorphism in Mongoloids of northern Asia.

Q-heterochromatin variants in seven autosomes (3, 4, 13-15, 21, 22) were studied in two Mongoloid populations of northern Asia (Chukchi and Khakass). Q-staining was obtained using propylquinacrine mustard. Of 132 Chukchi individuals aged 13 to 20 years, 124 had Q-polymorphic chromosomes, while eight (6.0%) had no bands with fluorescence levels 4 and 5. The mean number of Q variants was 2.2 per individual. Of the 120 Khakass individuals aged 14 to 17 years, 112 had Q-polymorphic chromosomes, while eight (6.7%) had no Q variants with fluorescence levels 4 and 5. The mean number of Q variants was 2.5 per individual. No differences were found in the frequency of Q variants between sexes in the two populations. There was complete agreement between the observed homo- and heteromorphic frequencies and those predicted by the law of Hardy-Weinberg. As the Mongoloid populations of northern Asia showed statistically significant homogeneity both in the frequency of Q variants and the distribution of homo- and heteromorphic variants, they were examined as a single group--that of northern Mongoloids. The following questions are discussed: (1) the possible selective value of chromosomal Q-heterochromatin material in the adaptation of human populations to certain extreme environmental factors, in particular to cold and hypoxia; (2) the intraracial heterogeneity of Asian Mongoloids; (3) the taxonomic value of chromosomal Q polymorphism in ethnic anthropology.

Adolescent↗

DNA polymorphism of the C2 and factor B genes. Detection of a restriction fragment length polymorphism which subdivides haplotypes carrying the C2C and factor B F alleles.

Factor B and the second component of complement (C2) in man are encoded within the major histocompatibility complex by single loci that are less than 1 kb apart. A 2.3 kb factor B-specific cDNA probe has been used to examine, by Southern blot analysis, the genomic DNA of individuals typed for C2 and factor B by protein electrophoresis. We have identified a restriction fragment length polymorphism using the endonuclease Taq I, which subdivides haplotypes carrying both the common variant of C2 (C2C) and the fast (F) variant of factor B. This DNA polymorphism has been mapped to lie in the C2 gene and represents a new genetic marker not defined by protein electrophoresis. This polymorphism may serve as a useful marker in the genetic analysis of diseases that are related to the major histocompatibility complex.

Alleles↗

Polymorphisms within the HLA-DR3 haplotypes. I. HLA-DR polymorphisms detected at the protein and DNA levels are reflected by T-cell recognition.

HLA-DR molecules were isolated from eight different HLA-DR3 homozygous B-cell lines by immunoprecipitation with monoclonal antibodies, and they were subsequently analyzed by two-dimensional gel electrophoresis. We found that HLA-DR3 homozygous B-cell lines of consanguineous origin express two types of HLA-DR molecules. One type of HLA-DR molecule was present in all the cell lines tested, whereas the second DR molecule appears to be polymorphic. DNA isolated from the different HLA-DR3 homozygous cell lines was studied by Southern blot analysis to determine whether any DR beta restriction fragment length polymorphism could be observed. Polymorphisms detected at both the product and genomic level have been compared to each other, and their relations to the serological (HLA-DR) and cellular (HLA-D and LB-Q1) typing data will be discussed.

Antibodies, Monoclonal↗

Bovine mitochondrial DNA polymorphism in restriction endonuclease cleavage patterns and the location of the polymorphic sites.

Cleavage patterns of mitochondrial DNA (mtDNA) by restriction endonuclease analysis were examined in four Japanese Black cows, three Japanese Shorthorn cows, and six Holstein cows. Seventeen restriction enzymes which recognize six base pairs and two restriction enzymes which recognize four base pairs were used in this study. Polymorphism was observed with three restriction enzymes, HindIII, TaqI, and MspI, and was detected within the breeds. Nucleotide substitution was determined in the HindIII polymorphic site by DNA cloning and sequencing; this is C----T at position 10126 of the URF-3 region. Furthermore, the MspI and TaqI polymorphic sites were located on the physical map.

Animals↗

Association of cholecystokinin A receptor gene polymorphism with cholelithiasis and the molecular mechanisms of this polymorphism.

BACKGROUND: The etiology of gallstone formation is multifactorial, and genetic factors are involved. The genetic variations of cholecystokinin A receptor (CCK-AR) in patients having gallstones and the molecular mechanisms of this polymorhpism were examined. The involvement of CCK-AR in gallstone formation was confirmed using CCK-AR gene knockout mice. METHODS: CCK-AR gene expression was determined by Northern transfer analysis in gallbladders with or without gallstones. Genetic variations were determined by Southern blot and by direct sequencing. Molecular mechanisms in terms of the transcriptional activity and methylation status were examined. Finally, we investigated whether gallstone formation was enhanced in CCK-AR gene knockout mice. RESULTS: The gene expression of CCK-AR was significantly decreased in gallbladders with gallstones compared to those without gallstones. No genetic variations were detected in the coding region, but two sequence variations were detected in the promoter region in gallstone patients. However, no significant differences were found for the promoter activities of polymorphic promoter constructs. In contrast, less methylation in the promoter region was related to substantial expression of the CCK-AR gene. Gallstone formation was enhanced in CCK-AR gene knockout mice. The homozygote (GG/TT) polymorphism of the CCK-AR gene showed a significantly higher percentage of body fat. CONCLUSIONS: Deteriorating gallbladder contractions, possibly induced by alterations in the CCK-AR gene, as well as CCK-AR gene polymorphism, promoted gallstone formation.

Adenocarcinoma↗

A novel microsatellite polymorphism in the human OB gene: a highly polymorphic marker for linkage analysis.

The mouse ob gene and its human homologue OB have recently been cloned. The mutations in the ob gene are known to be associated with extreme obesity. The relationship between the human OB gene and disease, however, is largely unknown due to the lack of suitable markers within or adjacent to the OB gene. To obtain informative markers, we searched for simple tandem repeat polymorphisms in the genomic sequence of the human OB gene and identified a novel tetranucleotide repeat in the 3' flanking region. Fifteen alleles were detected in this marker with a heterozygosity of 0.85 and polymorphism information content of 0.83, indicating a highly informative nature of this marker. Two-point linkage mapping in two Centre Etude Polymorphisme Humaine (CEPH) reference families suggested that this marker is located in the interval between D7S514 and D7S530, the same interval where the OB gene is located (recombination fractions with D7S514 and D7S530 were 0.026 and 0.034, respectively). Although allele frequency distributions of this marker did not differ between 84 control subjects and 69 NIDDM patients, there was a tendency to higher body weight in control subjects with class I/class I genotype than in those without this genotype (68.8 +/- 11.1 vs 60.8 +/- 10.3 kg, p = 0.05). The highly polymorphic nature of this marker and its location in the OB gene makes this marker useful for linkage studies of the OB gene with a number of phenotypes, such as obesity, non-insulin-dependent diabetes mellitus, hypertension and the insulin resistance syndrome.

Alleles↗

The relationship between COLI A1 polymorphisms (Sp 1) and COLI A2 polymorphisms (Eco R1 and Puv II) with bone mineral density in Chinese men and women.

Polymerase chain reaction was used to amplify across variable restriction sites of the COLI A1 and COLI A2 genes that encode the alpha 1 and 2 subunits of type I collagen. The relationship between these polymorphisms and bone mineral density (BMD) was studied in 683 Chinese men and women. In 100 men and women, COLI A1 Sp1 polymorphism was not found, which was consistent with other previous studies in Asian populations. However a statistically significant relationship was observed between COLI A2 Eco R1 and Puv II genotypes among the Chinese men studied. The mean BMD was consistently lower in men of the EE and PP genotype (P < 0.05 by analysis of variance [ANOVA]) than in men of the ee and pp genotypes. However, no association between BMD and the Eco R1 or Puv II genotypes was observed in Chinese women (P > 0.05 by ANOVA). We conclude that the COLI Al Sp1 binding site is absent in Hong Kong Chinese, whereas the COLI A2 Eco R1 and Puv II genetic polymorphisms may be associated with the BMD of elderly Chinese men.

Age Factors↗

The human caspase-activated DNase gene (hCAD): genomic structure, exonic single-nucleotide polymorphisms, and a highly polymorphic dinucleotide repeat at the hCAD locus.

Caspase-activated DNase (CAD) cleaves chromosomal DNA during apoptosis. We determined its genomic structure and identified single-nucleotide polymorphisms (SNPs) within exons 5 and 7, as well as a highly polymorphic dinucleotide repeat of (CT)m(CA)n within the 5' region of the human CAD gene (hCAD). The genomic structure of hCAD presented here, together with information concerning SNPs within the gene, as well as a highly polymorphic (CT)m(CA)n repeat fragment at the hCAD locus, may assist in the construction of genetic maps for exploring gene(s) that play pivotal roles in carcinogenesis.

Deoxyribonucleases↗

Single-strand conformational polymorphisms (SSCP): studies of the genetic polymorphisms of exon 4 of apolipoprotein C III.

OBJECTIVE: We used single-strand conformational polymorphism (SSCP). To screen for mutations/polymorphisms in exon 4 of the apolipoprotein C III in 45 patients with hypertriglyceridemia and 46 control individuals, single-strand conformational polymorphism was investigated using restriction endonuclease and amplification refractory mutations systems (ARMS). RESULTS: SSCP identified six patterns corresponding to six genotypes. We confirmed that the different genotypes result from the two polymorphic sites at positions 3175 and 3206 of the apo C III gene. Only three of four possible haplotypes were found in the study population. This resulted in the identification of 6 of the 10 possible genotypes. CONCLUSIONS: SSCP is a useful method to screen for both known and unknown mutations/polymorphisms and should have increasing applications in clinical laboratories involved with the study of genetic markers of a wide variety of diseases.

Adult↗

Polymerase chain reaction--single-strand conformation polymorphism analysis of polymorphism in DPA1 and DPB1 genes: a simple, economical, and rapid method for histocompatibility testing.

A new technical trial was carried out to detect polymorphism in HLA-DP genes, based on the diversity in electrophoretic mobility of single-stranded DNA (single-strand conformation polymorphism, SSCP). Genomic DNAs from 31 cell lines homozygous for 2 and 14 different DPA1 and DPB1 alleles, respectively, and from peripheral blood cells of a normal individual homozygous for another DPB1 allele were subjected to polymerase chain reaction (PCR) to amplify the polymorphic exon 2 of DPA1 or DPB1 genes. The PCR samples were denatured by heating in the presence of formamide to obtain single-stranded DNA, electrophoresed in a neutral polyacrylamide gel, and visualized by silver staining. Allelic differences were detected by the distinctive electrophoretic pattern of each single strand, depending on the sequence-specific conformation. Fifteen DPB1 alleles showed 11 distinct electrophoretic patterns, leaving four allelic combinations not distinguished. These four allelic combinations could be further distinguished by using another couple of primers in PCR, with which a part of the exon was amplified, and by subsequent SSCP analysis. The use of four pairs of primers in PCR allowed for discrimination of all the 15 DPB1 alleles tested. Two allelic differences in exon 2 of DPA1 gene could be clearly demonstrated. In addition, putative new alleles of DPA1 and DPB1 genes were detected by SSCP analyses. The PCR-SSCP analysis is simple and rapid, requires neither radioactive materials nor restriction enzymes, and is expected to be a useful tool for investigating the fine HLA-matching required for clinical transplantation of organs.

Alleles↗

Each otoconia polymorph has a protein unique to that polymorph.

1. Otoconia, contained within the vestibular portion of the inner ear, are mineralized by one of three polymorphs of calcium carbonate. Each otoconial polymorph contains a unique, major protein. 2. The major protein of calcitic otoconia of members of different vertebrate classes, Amphibia (African clawed frog) and Mammalia (rat), have similar molecular weights. 3. The major protein of calcitic rat otoconia and of vateritic otoconia of the gar may be calcium binding proteins. No protein from the other polymorph, aragonite, appear to have this characteristic.

Ambystoma mexicanum↗

Mapping the human liver/islet glucose transporter (GLUT2) gene within a genetic linkage map of chromosome 3q using a (CA)n dinucleotide repeat polymorphism and characterization of the polymorphism in three racial groups.

The human liver/islet glucose transporter (GLUT2), a candidate gene for diabetes, has been incorporated into a genetic linkage map for chromosome 3q using a (CA)n dinucleotide repeat polymorphism adjacent to the 3'-end of exon 4a. We have found a total of nine alleles ranging in length from 153 to 169 nucleotides in three racial groups and have determined the precise structure of the variable region for four of the alleles by DNA sequencing. Five alleles were found to be common to the American Black, Caucasian, and Pima Indian racial groups studied. One allele (169 bp) was unique to American Blacks, and another rare allele (153 bp) was found only in the Caucasian population studied. Observed heterozygosity of the polymorphism in the Caucasian (CEPH) reference pedigree collection is 60%, for American Blacks 71%, and for Pima Indians 53%. An independent study recently identified the same dinucleotide repeat and found six alleles in a Caucasian population (Froguel et al., 1991), a result that we confirm; however, our sequencing data indicate a different molecular structure for the polymorphism for some of the alleles. We have constructed a new genetic linkage map of chromosome 3q uniquely placing the GLUT2 gene between flanking markers D3S26 and D3S43. The genetic map consists of 23 loci (25 RFLPs and 2 (CA)n dinucleotide repeat markers) with 14 markers uniquely localized with odds of at least 1000:1. Three genes (FTHL4, TF, GLUT2) are integrated into the map, which spans a sex-average distance of 147.3 cM, 103.8 cM in males and 227.0 cM in females.(ABSTRACT TRUNCATED AT 250 WORDS)

Alleles↗

Correlation between DNA polymorphism and enzyme polymorphism argues in favour of the delineation of two species within Providencia alcalifaciens.

Ribosomal DNA (rDNA) polymorphism was compared to enzyme polymorphism and DNA/DNA hybridization data for the intraspecies differentiation of Providencia alcalifaciens. DNA from 27 strains previously classified into two zymotypes A1 and A2 and discriminated by two levels of DNA/DNA hybridization (delta Tm values of 0 to 1 degree C and 6 to 10 degrees C, respectively) were analysed by Southern blotting for rDNA polymorphism. The ribotypes fell into two ribogroups A1 and A2, which correlated with the corresponding zymotypes. This correlation argues for the proposed creation of two species within P. alcalifaciens.

Blotting, Southern↗

Pilot study of arbitrarily primed PCR-single stranded DNA conformation polymorphism analysis for screening genetic polymorphisms related to specific phenotypes.

BACKGROUND: To investigate relationships between phenotypes and genotypes is not simple. We propose a phenotype-to-genotype screening strategy and pooled DNA system. As a pilot study of this strategy, we used arbitrarily primed polymerase chain reaction (AP-PCR) in combination with single-stranded DNA conformation polymorphism (SSCP) to screen for genetic polymorphisms associated with longevity. METHODS: Study subjects were separated into 3 age groups, individuals aged >100 years, 90-99 years and 60-69 years. Genomic DNAs were prepared from each individual, pooled to represent the 5 study groups, and then the pooled genomic DNAs were subjected to AP-PCR-SSCP analysis. RESULTS: We found 1 SNP more frequently in senior citizens with longevity. The genotype frequency of the 82133G>A polymorphism of human chromosome 3 clone RP11-61K12 (AC011199) differed significantly (P=0.0189, Fisher's exact test) between older subjects (>90 years) and younger subjects (<70 years). It is noteworthy that the strategy we describe herein was useful for identifying an SNP that showed statistically significant differences in its distribution across the subject groups. CONCLUSIONS: The pooled DNA strategy and quantitative genotype discrimination can also be applied to screening for the relationship between phenotype and genotype more effectively.

Adult↗

Genetic polymorphisms in tumor necrosis factor (TNF)-alpha and TNF-beta in a population-based study of systemic lupus erythematosus: associations and interaction with the interleukin-1alpha-889 C/T polymorphism.

Tumor necrosis factor (TNF) is involved in the pathogenesis of systemic lupus erythematosus (SLE), but the role of TNF polymorphisms in SLE susceptibility remains unclear. Previous studies in different populations report an inconsistent association of the TNF-alpha -308A allele with SLE, sometimes depending on the presence of HLA-DR3. We examined the association of polymorphisms in TNF-alpha (-308G/A, -238G/A) and TNFbeta (+252A/G) in a population-based study of SLE in the southeastern United States and considered TNF-SLE associations with respect to HLA-DR3 and DR2 and the interleukin (IL)-1alpha -889C/T polymorphism, previously linked to SLE in this population. Genotypes were analyzed for 230 recently diagnosed SLE patients who met American College of Rheumatology classification criteria and 276 age- and sex-matched controls, randomly selected from driver's license registries. Carriage of the TNF-alpha -308A allele was significantly associated with SLE in Caucasians (OR = 2.3; 95% CI 1.4, 3.9), but not African Americans. Analyses stratified by IL-1alpha -889 genotypes (C/C vs C/T or T/T) revealed independent associations of SLE with TNF-alpha -308A or HLA-DR2 and DR3. This reflected a significant interaction of TNF and IL-1 genotypes in Caucasians, and yielded a strong association (OR = 8.0, p < 0.00001) for the combined "HLA-DR3, TNF-alpha -308A, IL-1alpha -889C/C" genotype. These findings provide evidence of cytokine gene epistasis in SLE susceptibility.

Adult↗