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PreviewIssue DateTitleAuthor(s)
2004Investigating the importance of the flexible hinge in caerin 1.1: Solution structures and activity of two synthetically modified caerin peptidesPukala, T.; Brinkworth, C.; Carver, J.; Bowie, J.
2009Structure/function studies of dogfish alpha-crystallin, comparison with bovine alpha-crystallinGhahghaei, A.; Rekas, A.; Carver, J.; Augusteyn, R.
2010The interaction of unfolding α-lactalbumin and malate dehydrogenase with the molecular chaperone αB-crystallin: a light and X-ray scattering investigationRegini, J.; Ecroyd, H.; Meehan, S.; Bremmell, K.; Clarke, M.; Lammie, D.; Wess, T.; Carver, J.
2008Dissociation from the oligomeric state is the rate-limiting step in fibril formation by kappa-caseinEcroyd, H.; Koudelka, T.; Thorn, D.; Williams, D.; Devlin, G.; Hoffmann, P.; Carver, J.
2003nNOS inhibition, antimicrobial and anticancer activity of the amphibian skin peptide, citropin 1.1 and synthetic modificationsDoyle, J.; Brinkworth, C.; Wegener, K.; Carver, J.; Llewellyn, L.; Olver, I.; Bowie, J.; Wabnitz, P.; Tyler, M.
2010αB-Crystallin inhibits the cell toxicity associated with amyloid fibril formation by κ-casein and the amyloid-β peptideDehle, F.; Ecroyd, H.; Musgrave, I.; Carver, J.
2008Amyloid fibril formation by bovine milk αs₂-casein occurs under physiological conditions yet is prevented by its natural counterpart, αs₁-caseinThorn, D.; Ecroyd, H.; Sunde, M.; Poon, S.; Carver, J.
2004Host-defence peptides of Australian anurans: structure, mechanism of action and evolutionary significanceSorrell, M.; Pukala, T.; Brinkworth, C.; Maselli, V.; Bowie, J.; Tyler, M.; Booker, G.; Wallace, J.; Carver, J.; Separovic, F.; Doyle, J.; Llewellyn, L.
2010The dissociated form of kappa-casein is the precursor to its amyloid fibril formationEcroyd, H.; Thorn, D.; Liu, Y.; Carver, J.