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PreviewIssue DateTitleAuthor(s)
2018Structural characterisation of the HT3 motif of the polyhistidine triad protein D from Streptococcus pneumoniae.Luo, Z.; Pederick, V.G.; Paton, J.C.; McDevitt, C.A.; Kobe, B.
2009Human neutrophils kill Streptococcus pneumoniae via serine proteasesStandish, A.; Weiser, J.
2019Streptococcus pneumoniae Capsular PolysaccharidePaton, J.; Trappetti, C.; Fischetti, V.A.; Novick, R.P.; Ferretti, J.F.; Portnoy, D.A.; Rood, J.I.
2008Neutrophil-toxin interactions promote antigen delivery and mucosal clearance of Streptococcus pneumoniaeMatthias, K.; Roche, A.; Standish, A.; Shchepetov, M.; Weiser, J.
2018Streptococcus pneumoniae potently induces cell death in mesothelial cellsRashwan, R.; Varano della Vergiliana, J.; Lansley, S.; Cheah, H.; Popowicz, N.; Paton, J.; Waterer, G.; Townsend, T.; Kay, I.; Brown, J.; Gary Lee, Y.; Ho, P.L.
2014Tyrosine phosphorylation enhances activity of pneumococcal autolysin LytAStandish, A.; Whittall, J.; Morona, R.
2014AdcA and AdcAII employ distinct zinc acquisition mechanisms and contribute additively to zinc homeostasis in Streptococcus pneumoniaePlumptre, C.; Eijkelkamp, B.; Morey, J.; Behr, F.; Couñago, R.; Ogunniyi, A.; Kobe, B.; O'Mara, M.; Paton, J.; McDevitt, C.
2014The cholesterol-dependent cytolysins pneumolysin and streptolysin O require binding to red blood cell glycans for hemolytic activityShewell, L.; Harvey, R.; Higgins, M.; Day, C.; Hartley-Tassell, L.; Chen, A.; Gillen, C.; James, D.; Alonzo, F.; Torres, V.; Walker, M.; Paton, A.; Paton, J.; Jennings, M.
1997Characterization of the Capsular Polysaccharide Biosynthesis Locus of Streptococcus pneumoniae Type 19FPaton, J.; Morona, J.; Morona, R.
2015Topology of Streptococcus pneumoniae CpsC, a Polysaccharide Copolymerase and Bacterial Protein Tyrosine Kinase Adaptor ProteinWhittall, J.; Morona, R.; Standish, A.; de Boer, P.