Dinucleotide repeats in the mouse Hox-4.4 and Hox-4.5 genes on chromosome 2, and their analysis in the BXD and BXH recombinant inbred strains.
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Biomedical subjects
Publications and source records attributed to C M Abbott.
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Mouse models of human genetic disorders provide a valuable resource for investigating the pathogenesis of genetic disease and for testing potential therapies. The high degree of resolution of linkage mapping in the mouse allows mutant phenotypes to be mapped precisely which, combined with the accurate definition of areas of homology between the mouse and human genomes, greatly facilitates the identification of mouse models. We describe here mouse models of human single gene disorders dividing them into three categories depending on the information available; phenotypic similarities, comparative mapping and identification of the underlying genetic lesion.
We describe our experiences of prenatal diagnosis of alpha-1-antitrypsin deficiency using closely linked polymorphisms detected by Southern blotting and the polymerase chain reaction. Prenatal diagnosis was carried out for 17 pregnancies from 15 couples.
Human brain cDNA clones for the myelin associated enzyme 2',3'-cyclic nucleotide 3'-phosphodiesterase (CNPase) have been isolated and sequenced. The only 5' untranslated region (UTR) sequence found was that of a human CNPII mRNA, with no direct evidence for a CNPI mRNA. Human CNPase cDNAs were used to isolate genomic clones containing the human CNPase gene which is 9 kb long. Four exons were identified, separated by three introns, and the sequence of each exon and intron/exon boundary has been established. The polymerase chain reaction (PCR) was used to detect the presence of the human CNPase gene in DNA from a panel of rodent/human somatic cell hybrids. By this means the human CNPase gene was mapped to chromosome 17. In situ hybridization of a human CNPase genomic clone to metaphase chromosomes further localized this gene to chromosomal band 17q21.
The mouse genes for cytosolic phosphoenolpyruvate carboxykinase-1 (Pck-1) and neuronal nicotinic acetylcholine receptor alpha 4 subunit (Acra-4) both map to distal chromosome 2 (Siracusa et al. 1989; Bessis et al. 1990). We have utilized Southern blot analysis on human/rodent somatic cell hybrids to map the human homologues of both of these genes, PCK1 and CHRNA4, to human chromosome 20.
The adenosine deaminase locus (Ada) in the mouse has been localized by in situ hybridization to band 2H3. Linkage analysis of backcross data has shown that Ada is 13.8 +/- 2.7 cM from the coat texture mutant, ragged, Ra. From the results of earlier work (Abbott, C. M., et al., Proc. Natl. Acad. Sci. USA 83:693, 1986), it had been suggested that wst was a low-activity allele of Ada, but this cannot be so because Ada and wst have been found to be nonallelic.
A panel of 19 somatic cell hybrids was tested for the presence of human sequences coding for complement components C6 and C7 by restriction enzyme digestion and Southern blots probed with human C6 and C7 cDNA probes. C7 was also detected by amplifying part of the human gene in hybrid DNA using the polymerase chain reaction. Detection of human C6 and C7 was completely correlated with the presence of chromosome 5.
During a study of the alpha 1 antitrypsin (AAT) protein and its locus (PI) by high resolution isoelectric focusing and direct molecular analysis of 106 PIZ probands and their families, a new allele (Ztun) was identified that resembles Z in many of its properties. Two sibs, both compound heterozygotes for Ztun and Z, showed similar evidence of mild liver involvement that was indistinguishable from that associated with classical ZZ homozygotes. The Ztun protein appeared to be deficient in the plasma to about the same degree as the Z protein. Allele specific oligonucleotide analysis of amplified genomic DNA indicated that the new allele is the result of a mutation in exon V that is identical to the classical G----A transition at codon 342 that results in the Glu----Lys substitution characteristic of the Z allele. An analysis of DNA haplotypes constructed from polymorphic restriction enzyme recognition sites in and around the PI locus confirmed that Ztun probably represents a new mutation at codon 342 that has occurred on an M2-like genetic background.
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Wasted (wst) is a spontaneous mutation with autosomal recessive inheritance. Abnormally low levels of adenosine deaminase have been found in erythrocytes from the wasted mouse. Enzyme activity in wst/wst mice is reduced to 38% of that found in the erythrocytes from control mice, and the apparent Km for adenosine is reduced to 51% of control. These changes imply an alteration in the catalytic properties of the enzyme arising from a change in the primary structure of the protein. We postulate that wasted is a mutation in the structural gene for adenosine deaminase. In man, the autosomal recessive form of severe combined immunodeficiency is associated, in about one-third of cases, with a deficiency of adenosine deaminase. Wasted mice are immunodeficient, develop neurological abnormalities, and die soon after weaning. These features are shared with the human syndrome. We therefore further suggest that the wasted mouse is an animal model for this form of severe combined immunodeficiency that will have potential use in gene-therapy studies.