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B Olaisen

Publications and source records attributed to B Olaisen.

At least 19 recordsLinked to original sources

The gene encoding human transmembrane secretory component (locus PIGR) is linked to D1S58 on chromosome 1.

The human transmembrane secretory component (SC or poly-Ig receptor, PIGR) is expressed basolaterally on glandular epithelial cells and is responsible for the external translocation of polymeric IgA and IgM. SC is hence a key molecule in antibody protection of mucosal surfaces. The human SC gene (locus PIGR) is located on chromosome 1 (1q31-q41). Here we present the first genetic linkage study of PIGR versus syntenic markers, including D1S58 and F13B, which have been previously regionalized to 1q31-q32 and 1q31-q32.1, respectively. We found that PIGR is closely linked to D1S58 (lods + 5.06 at theta max = 0.06, without sex difference). PIGR versus F13B showed + 1.46 at theta max = 0.25 for both sexes combined. A recombination of 0.06 between F13B and D1S58 (lods + 2.24) was in contrast to a previously published study giving theta max = 0.22 (lods + 3.9), the combined lods being 5.6 at theta max = 0.20. The progeny of a triply heterozygotic female indicated that PIGR is the flanking locus, therefore suggesting a cen-F13B-D1S58-PIGR-qter gene sequence on human chromosome 1. Only negative lod scores to RH, C8@, and PGM1 on 1p, and FY on proximal 1q, were found. Current combined Norwegian allele frequencies were estimated for PIGR to be A1 = 0.63, A2 = 0.37 (370 chromosomes), and for D1S58 to be A1 = 0.44, A2 = 0.56 (218 chromosomes).

Chromosome Mapping

Linkage and association studies with C8A and C8B RFLPs on chromosome 1.

Linkage relations for the C8A and C8B BamHI RFLPs have been investigated. A peak lod score of 4.52 at recombination fraction zero was obtained between the two C8 genes. Combined with our previously obtained linkage data (Rogde et al. 1986) the maximum lod score is 7.53 at recombination fraction zero. The compiled C8-PGM1 linkage data from this and the previous study gave a maximum lod score of 22.02 at recombination fraction 0.11 (0.07-0.16) with no sex difference. A chromosome 1p reference marker, D1S57, has been applied in this linkage study. A maximum lod score of 5.06 between the C8 cluster and D1S57 at theta = 0.18 (0.11-0.28) was recorded. The linkage analyses and triply informative families gave evidence that the C8 loci are situated about halfway between PGM1 and D1S57 on the short arm of chromosome 1. There was no evidence of allelic association between the C8A and C8B BamHI RFLPs in 62 unrelated haplotypes.

Chromosome Mapping

Haptoglobin subtypes in Norway and a review of HP subtypes in various populations.

Isofocusing and immunoblotting of reduced serum samples identify the common haptoglobin alpha-chain variants 1S, 1F, 2FS, 2SS, 2FF, 3, as well as several rare alpha- and beta-chain variants. The gene frequencies found in 6,668 unrelated persons involved in Norwegian paternity cases were: HP*1S: 0.22, HP*1F: 0.16, HP*2FS: 0.58, HP*2SS: 0.04, HP*2FF: 0.004, HP*3: 0.0004, other HP* alpha variants: 0.0004, HP* beta variants: 0.0008. The corresponding gene frequencies in 153 unrelated Norwegian Saamis (Lapps) were: HP*1S: 0.19, HP*1F: 0.07, HP*2FS: 0.70, HP*2SS: 0.04. Norwegians and Norwegian Saamis differed both in phenotype and allele distribution. An earlier Norwegian population study has shown a lower HP*1 frequency in the north than in the south. This regional difference in haptoglobin gene distribution was reflected in the present material as a lower 1F frequency, indicating a Saamish influence in northern Norway. Furthermore, the relatively low 2FF frequency in the north coincides with the lack of observed 2FF genes in the Saamish population. Non-Scandinavians involved in Norwegian paternity cases did not differ from the rest of the material. A review of published haptoglobin gene frequencies shows the 1F frequency to be a good indicator of ethnic origin, and that 2FF and 2SS frequency determinations may also be valuable in genetic population studies.

Alleles

The human transmembrane secretory component (poly-Ig receptor): molecular cloning, restriction fragment length polymorphism and chromosomal sublocalization.

The human transmembrane secretory component (SC) mediates glandular translocation of polymeric IgA and IgM into exocrine secretions. A 2898-bp cDNA clone, encoding the entire sequence of the human transmembrane SC, was isolated from a colonic adenocarcinoma cell line cDNA library. The deduced amino-acid sequence had a length of 764 residues and showed an overall similarity of 56% and 64% with the rabbit and rat counterpart, respectively. A restriction fragment length polymorphism (RFLP) was found with PvuII, revealing a two-alle RFLP with an autosomal codominant inheritance pattern and allele frequencies of 0.65 and 0.35. Southern blot analysis of human-rodent somatic hybrid panels, including hybrids with translocation chromosomes carrying different parts of chromosome 1, assigned the SC gene to 1q31-q42, thus confirming a previously reported provisional assignment.

Amino Acid Sequence

Use of DNA amplification (PCR) and direct DNA sequencing in the characterization of C4 alleles.

A procedure for detailed characterization of individual C4 alleles has been developed. DNA containing the two polymorphic clusters of C4 was amplified in the polymerase chain reaction (PCR). Direct DNA sequencing of amplified DNA was then performed by a modification of previously described techniques. The results were confirmed by M13 sequencing. Single C4A3 and C4B1 allele sequences were in accordance with previous reports. An individual typed C4A3B1 revealed double bands in the autoradiogram in the positions corresponding to the polymorphic nucleotides. We did not find the reported thymine in position 3641 specific for the C4A4 allele in an individual typed C4A4B2.

Alleles

Genetic aspects of complement component C8 in Norwegian meningococcal disease patients.

Sera from 85 consecutive systemic meningococcal disease patients and 203 matched control individuals were C8 typed. In the patient group, one C8B deficient individual was discovered; none in the control group. No case of C8A deficiency was encountered. The material was collected during a period of epidemic meningococcal disease in Norway, mainly due to group B organisms. C8A and C8B phenotype distributions were not significantly different in the two groups. This indicates that no particular C8 type (apart from deficiency) predisposes for meningococcal disease. Neither is there any evidence of over-representation of heterozygous deficiency among meningitis patients. The C8B deficient individual and his family were studied. Tests for haemolytic complement were normal in all members except for the proband. Electrophoretic C8 patterns seemed to be slightly weaker in the heterozygously C8B deficient individuals than in persons with 2 normal C8B genes. DNA from the family members were studied with regard to a restriction fragment length polymorphism (RFLP) for the C8B gene. All exhibited the same pattern, indicating that the C8B deficiency is not due to a major deletion in the C8B gene.

Complement C8

[Use of modern gene technology in forensic medicine].

Modern DNA technology has had a great impact upon the practice of forensic genetics. Recently developed methods have disclosed different types of genetic variability in human DNA. Typing of genetic DNA polymorphisms based on point mutations represents an alternative to the blood and protein systems developed before. However, the discovery of the so-called hypervariable regions (HVR) in the genome, which represent grossly rearranged areas of DNA, has, revolutionised the field. "Fingerprints", nearly specific for each individual in the population, can be developed by employing specific probes, restriction enzymes and Southern blot technique. We present some results of the application of these techniques in criminal cases investigated at the Institute of Forensic Medicine in Oslo. In future, the sensitivity of the methods may be increased through amplification procedures (PCR reaction).

DNA Probes

The genes for apolipoprotein all (APOA2) and the Duffy blood group (FY) are linked on chromosome 1 in man.

We have cloned a cDNA probe for human apolipoprotein AII and used it to analyze linkage relationships on chromosome 1. We found no recombinations between APOA2 and the gene coding for the Duffy blood group antigens (FY) in the 19 meioses examined. Our maximal lod score is 4.2 at zero recombination rate. K. Berg (1987, Cytogenet. Cell Genet. 46:579) found a maximal score of 2.5 at recombination fraction 0.14 in 54 meioses. When results from both studies are combined, the most likely distance between FY and APOA2 is about 10% recombination with a combined lod score of 5.6 for both sexes.

Amino Acid Sequence

Genetic analysis of C4 polymorphism by use of DNA amplification (PCR), allele-specific oligonucleotide probes and allele-specific restriction enzymes.

In vitro DNA amplification allows multiplication of selected gene segments thereby improving the sensitivity in DNA analysis. Different allelic variants in the amplified DNA may be disclosed either by subsequent hybridization with allele-specific oligonucleotides or by subsequent allele-specific digestion with selected restriction endonucleases, followed by separation in agarose gel electrophoresis. The genes that code for human complement component C4 are polymorphic. Presently we demonstrate that allelic differences in C4, involving one base pair only, can be efficiently identified in the amplified DNA by each of the two techniques. A combination of both techniques may also be employed. The DNA amplification procedure may give access to selected 'haploid' fragments for individual DNA studies.

Alleles

C8A and C8B polymorphisms in Norwegians and Norwegian lapps.

C8 inheritance patterns in 364 mother-child pairs formed the basis for evaluation of the existence of silent alleles (null alleles) in the genes determining the two known polymorphic C8 systems. While evidence for such alleles was not found in C8A (alpha-gamma complex), two observations of null allele segregation in C8B (beta chain) indicate a C8BQ*0 allele frequency of about 0.07. Two population samples comprising 150 Lappish and 1,264 non-Lappish Norwegians were examined for phenotype distributions in C8A and C8B. The phenotype distributions were mainly in accordance with the expected Hardy-Weinberg distribution. The results for C8A indicated simple, codominant inheritance of two frequent and several rare alleles. Allele frequencies were similar in the two populations. The C8A B gene frequency in Norwegians was significantly lower than that in FRG and higher than that in Negroes. C8B allele frequencies were also calculated from gene counts in the population material, but with due corrections for the C8BQ*0 frequency observed in the mother-child material.

Alleles

[The polyposis project].

A research project initiated in 1978 comprised establishment of a national polyposis registry, a genetic linkage study using classical and DNA markers, an in vitro study of fibroblasts for transformation parameters and chromosome instability, and a comparative study of DNA-RFLPs in cancer and constitutional tissue. The linkage study (to be reported elsewhere) confirmed the recently reported close linkage between the polyposis gene locus APC and D5S71. No in vitro test for the presence of the APC gene has been confirmed or revealed, but we detected increased chromosomal instability on a statistical basis and also recorded abnormal DNA-repair. As per 1. January 1988 the prevalence of adenomatosis of colon and rectum in Norway was 1/43,500. Among patients born in the period 1931-1950 the incidence at birth of developing the disease is 1/20,000 and the mutation rate is 1/72,000 per gamete per generation. In Norway new mutants in healthy families will comprise 1/3-1/2 of all new cases in the coming two decades, or one of 36,000 births.

Adenomatous Polyposis Coli

Forensic aspects of haptoglobin: electrophoretic patterns of haptoglobin allotype products and an evaluation of typing procedure.

A procedure used for haptoglobin (Hp) typing in paternity cases has been evaluated. All serum samples have been subtyped with a one-dimensional isoelectric focusing/immunoblotting method, and samples with rare or questionable patterns have been further examined by two-dimensional electrophoresis with isoelectric focusing in the first dimension followed by sodium dodecyl sulfate-polyacrylamide gel electrophoresis in the second dimension. The electrophoretic Hp-patterns of common and rare alpha- and beta-chain variants are shown, including allotype patterns of two new beta-chain variants and three new alpha-chain variants. Retyping of nearly 2000 individuals at intervals between 1 to 12 months revealed a typing error frequency of about 0.3%, which is considered acceptable, provided new blood samples are required in every case of paternity exclusion. Comparison of typing results obtained with the present procedure and with routine starch gel electrophoresis in more than 5000 serum samples gave conflicting results in 6 samples. The sensitivity of the described one-dimensional subtyping method was slightly better than that of starch gel electrophoresis. In 4110 unrelated individuals, involved in cases of disputed paternity the Hp 2SS 0.038, Hp 2FF 0.004, and Hp 3 (Johnson) 0.0005. These allele frequencies give a theoretical paternity exclusion rate of 32.5%, which is in accordance with the observed rate in 2200 paternity cases with more than 600 non-fathers. It is concluded that the present procedure represents a definite improvement for Hp subtyping in practical paternity diagnostics. Preliminary results with retyping of weak Hp patterns using a staining technique involving the biotin/avidin complex indicate that the sensitivity of the one-dimensional subtyping method may be substantially increased.(ABSTRACT TRUNCATED AT 250 WORDS)

Electrophoresis, Gel, Two-Dimensional

Restriction fragment length polymorphisms of the complement component C4 loci on chromosome 6: studies with emphasis on the determination of gene number.

Restriction fragment length polymorphisms of the C4 region of human chromosome 6 have been studied in family material where the haplotypes are defined with regard to other genetic markers in this region. Employing one near full-length C4 probe and the combination of BglII and XbaI enzymes, five different C4 genes were characterized. Studies of the segregation of DNA patterns in families made possible the reliable determination of DNA C4 haplotype pattern including gene number. In the total material of 76 haplotypes, 13 different types with regard to number and/or DNA type of C4 gene(s) were encountered. Twelve of the haplotypes had one C4 gene only, 58 had two genes, while 6 had three C4 genes. This fits fairly well with the hypothesis that the one- and three-gene haplotypes have originated through unequal crossing-over between chromosomes carrying duplicated C4 genes.

Blotting, Southern

Elevated levels of hypoxanthine in vitreous humor indicate prolonged cerebral hypoxia in victims of sudden infant death syndrome.

Hypoxanthine levels in vitreous humor from 32 infants who died of sudden infant death syndrome (SIDS) were determined and compared with levels found in eight children who died of trauma, drowning, or hanging and with levels from seven neonates dying suddenly without long-standing antemortem hypoxia. Determination of hypoxanthine level was done with either a PO2 electrode method or high-performance liquid chromatography. The results obtained by both methods were significantly correlated; therefore they were pooled. The median hypoxanthine level in victims of SIDS (380 mumol/L) was significantly higher (P less than .001) than in the children who died violently (118 mumol/L). Moreover, the levels from the SIDS victims were significantly higher (P less than .001) than those from the neonates who died without long-standing hypoxia (53 mumol/L). It is concluded that SIDS is probably not a sudden event but may be preceded by a relatively long period of respiratory failure and hypoxia.

Female