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PreviewIssue DateTitleAuthor(s)
2015A second β-hexosaminidase encoded in the streptococcus pneumoniae genome provides an expanded biochemical ability to degrade host glycansRobb, M.; Robb, C.; Higgins, M.; Hobbs, J.; Paton, J.; Boraston, A.
2015Structural and biochemical analysis of a single amino-acid mutant of WzzBSF that alters lipopolysaccharide O-antigen chain length in shigella flexneriChang, C.; Tran, E.; Ericsson, D.; Casey, L.; Lonhienne, T.; Benning, F.; Morona, R.; Kobe, B.; Dobson, R.
2012Structure of the apo form of Bacillus Stearothermophilus PhosphofructokinaseMosser, R.; Reddy, M.; Bruning, J.; Sacchettini, J.; Reinhart, G.
2012Selective inhibition of biotin protein ligase from Staphylococcus aureusSoares da Costa, T.; Tieu, W.; Yap, M.; Pendini, N.; Polyak, S.; Pedersen, D.; Morona, R.; Turnidge, J.; Wallace, J.; Wilce, M.; Booker, G.; Abell, A.
2009Sequence-structure relationships in polysaccharide co-polymerase (PCP) proteinsMorona, R.; Purins, L.; Tocilj, A.; Matte, A.; Cygler, M.
2011The conformation and function of a multimodular glycogen-degrading pneumococcal virulence factorvan Bueren, A.; Ficko-Blean, E.; Pluvinage, B.; Hehemann, J.; Higgins, M.; Deng, L.; Ogunniyi, A.; Stroeher, U.; El Warry, N.; Burke, R.; Czjzek, M.; Paton, J.; Vocadlo, D.; Boraston, A.
2008Bacterial polysaccharide co-polymerases share a common framework for control of polymer lengthTocilj, A.; Munger, C.; Proteau, A.; Morona, R.; Purins, L.; Ajamian, E.; Wagner, J.; Papadopoulos, M.; Van Den Bosch, L.; Rubinstein, J.; Fethiere, J.; Matte, A.; Cygler, M.
2011Interaction between the biotin carboxyl carrier domain and the biotin carboxylase domain in pyruvate carboxylase from rhizobium etliLietzan, A.; Menefee, A.; Zeczycki, T.; Kumar, S.; Attwood, P.; Wallace, J.; Cleland, W.; Maurice, M.
2009Structural insights into the mechanism of the allosteric transitions of Mycobacterium Tuberculosis cAMP receptor proteinReddy, M.; Palaninathan, S.; Bruning, J.; Thurman, C.; Smith, D.; Sacchettini, J.
2011Structural analysis of the essential resuscitation promoting factor YeaZ suggests a mechanism of nucleotide regulation through dimer reorganizationAydin, I.; Saijo-Hamano, Y.; Namba, K.; Thomas, C.; Roujeinikova, A.; van Veen, H.W.