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Results 11-18 of 18 (Search time: 0.001 seconds).
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PreviewIssue DateTitleAuthor(s)
2009A dietary non-human sialic acid may facilitate hemolytic-uremic syndromeLofling, J.; Paton, A.; Varki, N.; Paton, J.; Varki, A.
2009Pneumococcal histidine triad proteins are regulated by the Zn²⁺-dependent repressor AdcR and inhibit complement deposition through the recruitment of complement factor HOgunniyi, A.; Grabowicz, M.; Mahdi, L.; Cook, J.; Gordon, D.; Sadlon, T.; Paton, J.
2009The COG complex, Rab6 and COPI define a novel golgi retrograde trafficking pathway that is exploited by SubAB toxinSmith, R.; Willett, R.; Kudlyk, T.; Pokrovskaya, I.; Paton, A.; Paton, J.; Lupashin, V.
2009Sab, a novel autotransporter of locus of enterocyte effacement-negative shiga-toxigenic escherichia coli O113:H21, Contributes to adherence and biofilm formationHerold, S.; Paton, J.; Paton, A.
2009The endoplasmic reticulum chaperone BiP/GRP78 is important in the structure and function of the human cytomegalovirus assembly compartmentBuchkovich, N.; Maguire, T.; Paton, A.; Paton, J.; Alwine, J.
2009Streptococcus pneumoniae autolysis prevents phagocytosis and production of phagocyte-activating cytokinesMartner, A.; Skovbjerg, S.; Paton, J.; Wold, A.
2009Subtilase cytotoxin cleaves newly synthesized BiP and blocks antibody secretion in B lymphocytesHu, C.; Dougan, S.; Winter, S.; Paton, A.; Paton, J.; Ploegh, H.
2009Shiga Toxin-producing Escherichia coli Strains Negative for Locus of Enterocyte EffacementNewton, H.; Sloan, J.; Bulach, D.; Seemann, T.; Allison, C.; Tauschek, M.; Robins-Browne, R.; Paton, J.; Whittam, T.; Paton, A.; Hartland, E.