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Biomedical subjects

K Whaley

Publications and source records attributed to K Whaley.

202 records · Page 12Linked to original sources

A point mutation in the C1-inhibitor gene causes type I hereditary angiooedema.

The polymerase chain reaction and nucleotide sequencing have been used to characterise a single base substitution (CAG-->TAG at nucleotide 16842 in the C1-inhibitor gene in the affected members of a single family with type I C1-inhibitor deficiency. This mutation creates the TAG translation termination codon, thereby truncating the C1-inhibitor C-terminus by 17 amino acids. The effects of the mutation are discussed.

Amino Acid Sequence↗

Characterisation of nucleotide sequence variants and disease-specific mutations involving the 3' end of the C1-inhibitor gene in hereditary angio-oedema.

The sixth, seventh and eighth exons of both alleles of the C1-inhibitor gene were nucleotide sequenced in 52 individuals from 20 kindred with type I hereditary angio-oedema (HAE), 5 kindred with type II HAE and 10 control kindred. Four previously unreported nucleotide which had no disease specificity were identified in addition to a sequencing error in the eighth exon. In addition, a T-->C mutation at position 8770 (resulting in a Phe-->Leu substitution at position 291) was identified on the abnormal allele of the affected members of a family with type I HAE due to an exon 6 donor splice site mutation. The significance of this mutation is not known. Disease-specific mutations were identified in 100% of type II HAE kindred and in 20% of type I HAE kindred. The relevance of these findings to the evolving understanding of the molecular genetics of HAE is discussed.

Alleles↗

Alternative pathway complement activation in rheumatoid arthritis.

Serum and synovial fluid (SF) levels of the complement components C3, C5, factor B (B), properdin (P), beta 1H and C3b inactivator (C3bINA), and EDTA-plasma and SF concentrations of C3d and Ba were measured in 40 rheumatoid arthritis (RA) and 5 patients with osteoarthritis. Decreased SF concentration of B and P and increased levels of Ba showed that increased alternative pathway turnover occurred in RA. Reduced SF C3bINA concentrations occurred, but levels of beta 1H were not reduced. The results showed that alternative pathway turnover was dependent upon C3 turnover, but failed to support the notion that levels of C3bINA or beta 1H control alternative pathway turnover in RA.

Arthritis, Rheumatoid↗