W. George Lanyon
University of Glasgow
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Featured researches published by W. George Lanyon.
Human Genetics | 1995
Sanjay I. Bidichandani; W. George Lanyon; Caroline Shiach; R. Shiach; Gordon Lowe; J. Michael Connor
Haemophilia A is a common X-linked recessive disorder of bleeding caused by deleterious mutations in the gene for clotting factor VIII. The large size of the factor VIII gene, the high frequency of de novo mutations and its tissue-specific expression complicate the detection of mutations. We have used a combination of reverse transcription/polymerase chain reaction (RT-PCR) of ectopic factor VIII transcripts and PCR of genomic DNA to amplify the entire essential sequence of the factor VIII gene. Chemical mismatch cleavage analysis and direct sequencing have then be empolyed in order to facilitate a comprehensive search for mutations. In this report, we describe the characterisation of nine potentially pathogenic mutations, six of which are novel. The mutations include six single base substitutions (five missense, viz. D56E, V162M, G701D, A1834T and R18691, and one nonsense, viz. R5X), a single base deletion (5697delC), a gross deletion of exon 16 and one mRNA abnormality characteristic of the common intron-22-embedded F8A-mediated DNA inversion. In each case, a correlation of the genotype with the observed phenotype is presented. In order to evaluate the pathogenicity of the five missense mutations, we have analysed them for evolutionary sequence conservation and for their involvement with sequence motifs catalogued in the PROSITE database of protein sites and patterns. Analysis of the sequences in the immediate vicinity of the mutations has revealed sequence features that may have had a possible role in mutagenesis.
Human Heredity | 1998
Patricia M.L. Ong; W. George Lanyon; Richard J. Hift; Janet Halkett; Celia E. Cramp; Michael R. Moore; J. Michael Connor
We have screened the hydroxymethylbilane synthase cDNAs of 3 patients from 2 families suffering from acute intermittent porphyria (AIP) from Scotland and South Africa using heteroduplex and chemical cleavage of mismatch analyses. Direct sequencing was used to characterise the mutations. The two novel mutations identified were a missense mutation at nucleotide position 64 in exon 3 (R22C) and a single base-pair deletion in exon 15. These mutations are predicted to affect the normal function of the enzyme and, therefore, are expected to be the primary cause of disease in these patients.
Human Genetics | 1994
Sanjay I. Bidichandani; W. George Lanyon; J. Michael Connor
In an attempt to characterize disease producing mutations in the factor VIII gene we screened exons 4, 7, 8, 11, 12 and 16 by PCR-SSCP (polymerase chain reactionsingle strand conformation polymorphism), in 12 randomly selected haemophilia A patients. These exons were chosen because they have been reported to harbour a disproportionately high number of mutations relative to their size. Using this strategy we detected a frame-shifting 5-bp deletion (TACCT, involving nucleotides 519–523), which is predicted to result in a severely truncated factor VIII polypeptide, terminating approximately midway through the conserved A1 domain and resulting in the observed severe phenotype. We also showed that the sequence in the vicinity of the observed deletion is concordant with the modified “slipped-mispairing at DNA replication” model of Krawczak and Cooper.
Human Molecular Genetics | 1994
Smita M. Purandare; W. George Lanyon; J. Michael Connor
Human Molecular Genetics | 1994
Charles S. Mgone; W. George Lanyon; Michael R. Moore; Gordon V. Louie; James R. Connor
Human Mutation | 1993
Marie Boyd; W. George Lanyon; J. Michael Connor
Human Molecular Genetics | 1995
Smita M. Purandare; W. George Lanyon; Reynir Arngrimsson; J. Michael Connor
Molecular and Cellular Probes | 1997
Patricia M.L. Ong; W. George Lanyon; Gordon Graham; Richard J. Hift; Janet Halkett; Michael R. Moore; J. Michael Connor
Human Molecular Genetics | 1994
Sanjay I. Bidichandan; Caroline R. Shiach; W. George Lanyon; J. Michael Connor
Molecular and Cellular Probes | 1998
Patricia M.L. Ong; W. George Lanyon; Michael R. Moore; J. Michael Connor