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Mumford, A.

Publications and source records attributed to Mumford, A..

2 recordsLinked to original sources

Efficient Recombinant Production and Functional Characterisation of Cytotoxic and Haemotoxic Snake Venom Metalloproteinases

Snake venoms contain diverse mixtures of toxins that evolved to incapacitate prey, but in humans they cause extensive pathology following snakebite envenomation. In viper venom, some of the most potent toxins are the haemorrhagic and coagulopathic snake venom metalloproteinases (SVMPs). Because venoms contain a SVMP cocktail, and due to their cytotoxicity, SVMP characterizations have been hampered by the lack of purified enzymes. By incorporating their prodomain, which blocks the active SVMP site, we overcame their cytotoxicity and enabled recombinant production of zymogens from all three structurally variable SVMP classes (PI, PII and PIII) using our baculovirus/insect cell expression system. Zymogens were auto-activated by incubation with Zn2+ ions, resulting in prodomain cleavage, PII disintegrin cleavage and PIII prodomain proteolysis. Auto-activated SVMPs were characterized using protein substrate degradation, platelet aggregation and blood coagulation assays, benchmarked to native venom-purified SVMP. Our recombinant zymogen production protocol is generically applicable for the expression of SVMPs, unlocking biomedical use in haematology, and discovery of novel snakebite therapeutics.

pharmacology and toxicology↗

PIK3R3 is a candidate regulator of platelet count in people of Bangladeshi ancestry

Platelets are mediators of cardiovascular disease and are regulated by complex sets of interacting genes. To reveal new regulatory loci for platelet count (PLT), we performed genome-wide association studies (GWAS) in 20,218 Bangladeshi (BAN) and 9,198 Pakistani (PAK) individuals from the Genes and Health study. Most significantly associated loci (p <5 x10-8) replicated findings in prior transethnic GWAS. However, the BAN locus defined by rs946528 (chr1:46019890) did not associate with PLT in the PAK analysis but was in the same linkage disequilibrium block as PLT-associated variants in prior East Asian GWAS. The single independent association signal was refined to a 95% credible set of 343 variants spanning eight coding genes. Functional annotation, mapping to megakaryocyte regulatory regions and colocalization with whole blood eQTLs identified the most likely mediator of the PLT phenotype to be PIK3R3 encoding a regulator of phosphoinositol 3-kinase, widely linked elsewhere to adverse cardiovascular phenotypes.

genomics↗