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Biomedical subjects

B Werelius

Publications and source records attributed to B Werelius.

5 recordsLinked to original sources

Predictive testing for multiple endocrine neoplasia type 1 using DNA polymorphisms.

Multiple endocrine neoplasia type 1 (MEN1) is an autosomal dominantly inherited predisposition to neoplastic lesions of the parathyroids, pancreas, and the pituitary. We have previously located the predisposing genetic defect to the long arm of chromosome 11 by genetic linkage. In this study, 124 members of six MEN1 families, including 59 affected individuals, were genotyped for restriction fragment length polymorphisms with different DNA probes, and the genetic linkage between these marker systems and MEN1 was determined. 13 marker systems (17 DNA probes) were found to be linked to MEN1. These markers are located within a region on chromosome 11 spanning 14% meiotic recombinations, with the MEN1 locus in the middle. Four of the marker systems are on the centromeric side of MEN1, and four on the telomeric side, based on meiotic crossovers. The remaining five DNA probes are closely linked to MEN1, with no crossovers in our set of families. The 13 marker systems can be used for an accurate and reliable premorbid test for MEN1. In most clinical situations it is possible to identify a haplotype of this part of chromosome 11 with the mutant MEN1 allele in the middle. The calculated predictive accuracy is greater than 99.5% if three such marker systems are informative. Therefore, genetic linkage testing can be used for informed genetic counseling in MEN1 families, and to avoid unnecessary biochemical screening programs.

Chromosome Mapping

Detailed physical map of human chromosomal region 11q12-13 shows high meiotic recombination rate around the MEN1 locus.

We have constructed a physical map of the region q12-13 on chromosome 11 by combining data generated from a panel of radiation-reduced somatic cell hybrids and pulsed-field gel electrophoresis (PFGE). Twenty different genetic markers have been sublocalized and ordered within this region and a total of 8.0 megabases has been mapped in detail using rare-cutting restriction endonucleases and PFGE. In two instances, the long-range restriction PFGE map spans the total distance between pairs of loci that have been previously mapped by genetic linkage in reference families. Comparison of this physical map with the available linkage map indicates a great variation in the recombination frequency over the region. The recombination rate is higher than expected, particularly for markers flanking the MEN1 region. Thus, for the closest pair of linked markers on the centromeric side, one centimorgan corresponds to approximately 300 kilobases, and for markers on the telomeric side, one centimorgan corresponds to approximately 350-600 kilobases.

Animals

Sister chromatid exchange in peripheral lymphocytes of subjects vaccinated against measles.

The SCE frequency was studied in cultures of peripheral lymphocytes from three subjects before and after vaccination against measles. The immunological vaccination reactions were monitored by antibody titration and by measurement of DNA synthesis in peripheral lymphocytes. In two of the subjects, on the 14th day after vaccination, there was a marked decrease of the SCE frequency coinciding with common clinical vaccination reactions and an increase of DNA synthesis in the peripheral lymphocytes. The increase of antibody titers started on the 17th day. One month later, when the immunological reactions had subsided, the SCE frequency was increased by 25% over the prevaccination level. Third subject displayed a delayed vaccination response due to a simultaneous influenza infection. This subject showed a 50% increase in the SCE frequency on the 14th day as well as 6 weeks after vaccination. These results suggest that significant changes in the SCE frequency may be related to immunological vaccination reactions.

Adult