1sfj Citations

Crystal structures of Staphylococcus aureus type I dehydroquinase from enzyme turnover experiments.

Proteins 56 625-8 (2004)
Cited: 10 times
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Articles - 1sfj mentioned but not cited (2)

  1. Discovery of Potential Noncovalent Inhibitors of Dehydroquinate Dehydratase from Methicillin-Resistant Staphylococcus aureus through Computational-Driven Drug Design. Millán-Pacheco C, Rios-Soto L, Corral-Rodríguez N, Sierra-Campos E, Valdez-Solana M, Téllez-Valencia A, Avitia-Domínguez C. Pharmaceuticals (Basel) 16 1148 (2023)
  2. Quinate-based ligands for irreversible inactivation of the bacterial virulence factor DHQ1 enzyme-A molecular insight. Rodríguez Á, Maneiro M, Lence E, Otero JM, van Raaij MJ, Thompson P, Hawkins AR, González-Bello C. Front Mol Biosci 10 1111598 (2023)


Articles citing this publication (8)

  1. Insights into the mechanism of type I dehydroquinate dehydratases from structures of reaction intermediates. Light SH, Minasov G, Shuvalova L, Duban ME, Caffrey M, Anderson WF, Lavie A. J Biol Chem 286 3531-3539 (2011)
  2. Comparison of ligand-induced conformational changes and domain closure mechanisms, between prokaryotic and eukaryotic dehydroquinate synthases. Nichols CE, Ren J, Leslie K, Dhaliwal B, Lockyer M, Charles I, Hawkins AR, Stammers DK. J Mol Biol 343 533-546 (2004)
  3. A conserved surface loop in type I dehydroquinate dehydratases positions an active site arginine and functions in substrate binding. Light SH, Minasov G, Shuvalova L, Peterson SN, Caffrey M, Anderson WF, Lavie A. Biochemistry 50 2357-2363 (2011)
  4. New insights into the mechanism of the Schiff base hydrolysis catalyzed by type I dehydroquinate dehydratase from S. enterica: a theoretical study. Yao Y, Li ZS. Org Biomol Chem 10 7037-7044 (2012)
  5. Insights into substrate binding and catalysis in bacterial type I dehydroquinase. Maneiro M, Peón A, Lence E, Otero JM, Van Raaij MJ, Thompson P, Hawkins AR, González-Bello C. Biochem J 462 415-424 (2014)
  6. Crystal structure of type I 3-dehydroquinate dehydratase of Aquifex aeolicus suggests closing of active site flap is not essential for enzyme action. Devi AS, Ebihara A, Kuramitsu S, Yokoyama S, Kumarevel T, Ponnuraj K. Biochem Biophys Res Commun 432 350-354 (2013)
  7. Molecular analysis and essentiality of Aro1 shikimate biosynthesis multi-enzyme in Candida albicans. Stogios PJ, Liston SD, Semper C, Quade B, Michalska K, Evdokimova E, Ram S, Otwinowski Z, Borek D, Cowen LE, Savchenko A. Life Sci Alliance 5 e202101358 (2022)
  8. Structure and lability of archaeal dehydroquinase. Smith NN, Gallagher DT. Acta Crystallogr Sect F Struct Biol Cryst Commun 64 886-892 (2008)