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S M Darling

Publications and source records attributed to S M Darling.

21 records · Page 2Linked to original sources

Isolation and characterization of an alphoid centromeric repeat family from the human Y chromosome.

A collection of human Y-derived cosmid clones was screened with a plasmid insert containing a member of the human X chromosome alphoid repeat family, DXZ1. Two positive cosmids were isolated and the repeats they contained were investigated by Southern blotting, in situ hybridization and sequence analysis. On hybridization to human genomic DNAs, the expected cross-hybridization characteristic of all alphoid sequences was seen and, in addition, a 5500 base EcoRI fragment was found to be characteristic of a Y-specific alphoid repeat. Dosage experiments demonstrated that there are about 100 copies of this 5500 base EcoRI alphoid fragment on the Y chromosome. Studies utilizing DNA from human-mouse hybrids containing only portions of the Y chromosome and in situ hybridizations to chromosome spreads demonstrated the Y centromeric localization of the 5500 base repeat. Cross-hybridization to autosomes 13, 14 and 15 was also seen; however, these chromosomes lacked detectable copies of the 5500 base EcoRI repeat sequence arrangement. Sequence analysis of portions of the Y repeat and portions of the DXZ1 repeat demonstrated about 70% homology to each other and of each to the human consensus alphoid sequence. The 5500 base EcoRI fragment was not seen in gorilla, orangutan or chimpanzee male DNA.

Animals↗

Methods to analyse the human genome.

There is much interest in the use of gene-specific probes for the study of dysfunction in human pathology. For the haemoglobinopathies, globin gene recombinants (either prepared from DNA sequences complementary to messenger RNA, or from genomic DNA) are used to determine whether globin genes are present, whether they are expressed in the nucleus, and whether they are correctly processed to give functional mRNAs. This has not only allowed a fuller understanding of the molecular aetiology of the thalassaemias, but also permitted antenatal diagnosis both by direct analysis of the gene lesion, and by linkage analysis using adjacent genes. Similar approaches are being applied to many other single gene defects. There are, however, other possible ways to study human hereditary disease using recombinants. It is now feasible to use random human chromosome-specific sequences to establish a linkage map for the entire human genome. Such a map may then be used either to determine the chromosomal localisation of any "single gene" phenotype by linkage analysis, or to study the contribution of different genes to a complex phenotype determined by several genes, as in multifactorial disease.

Chromosome Mapping↗