The increased COMT activity in Down syndrome patients is not a consequence of dosage effect owing to location of the gene on chromosome 21: further evidence.
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Biomedical subjects
Publications and source records attributed to C Brahe.
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Human transcobalamin II (TC2), a vitamin B12 binding serum protein, is synthesized and secreted into the medium by cells growing in vitro. Mouse-man somatic cell hybrids were analyzed in order to map the locus of TC2. The presence of human TC2 in the culture media was correlated with the results of genetic marker and chromosome analysis of the hybrid cells. Chromosome 22 showed 100% concordancy. However, chromosome 6 (90% concordancy) and chromosome 7 (96% concordancy) were not completely excluded. Meningioma cells obtained from patients heterozygous for TC2 showed a concomitant loss of one chromosome 22 and one of the TC2 alleles, strongly supporting the assignment to chromosome 22.
Catechol-O-methyltransferase (COMT) plays an important role in the inactivation of catecholamines. It has been demonstrated that erythrocyte COMT activity is genetically determined and controlled by a major autosomal locus with two alleles. The recent development of a method which allows the detection of COMT isozymes directly in autoradiozymograms has provided the means to investigate the chromosome location of the gene by using somatic cell hybrids. We have found that a single form of the COMT enzyme is expressed in several mouse-human fibroblast cell lines. The data obtained from the segregation analysis of the COMT enzyme in these hybrids and their subclones have provided evidence for the location of a major gene for COMT activity on human chromosome 22.
Erythrocyte catechol-O-methyltransferase (COMT) activity was measured in 142 members of 32 nuclear families in which one child had Down syndrome (DS). The mean activity in subjects with trisomy 21 appears higher than in parents and sibs, though not significantly so. However, this fact does not seem to modify the properties expected for a trait genetically controlled in a diploid population. The commingling analysis of the COMT activity in the whole group, and in each subgroup of relatives, suggests a mixture of two or, more likely, three components, the latter being in agreement with a transmission model of genes without dominance. The most parsimonious hypothesis supported by the mixed model segregation analysis is that of an additive major locus (d = 0.5) with an estimated frequency of 0.40 +/- 0.03 for the COMTH gene, to which a small polygenic effect (H = 0.067) can be added. This hypothesis is supported further by the analysis of family resemblance, r = 0.45 +/- 0.12 being the maximum likelihood estimator of the intraclass correlation among sibs. The higher COMT activity in DS subjects may reflect a situation of general enzyme disorder only indirectly connected with trisomy of chromosome 21.
An electrophoretic procedure for separating the molecular forms of catechol-O-methyltransferase in cellulose acetate gel is described; the zones of enzyme activity were revealed by autoradiography. The electrophoretic patterns of the enzyme in several tissues and cell lines derived from four different species are presented.
Human lymphocytes were efficiently hybridized with three rodent cell lines growing attached to a substrate, by a procedure similar to the monolayer fusion technique. Lymphocytes in suspension were directly added to the monolayer and cocultured for a few hours. Treatment with polyethylene glycol (PEG) induced close contact between the two cell types, and extensive cell fusion occurred. The rate of hybridization differed markedly for the different cell lines used.
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