참고문헌
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Eur. J. Biochem.
v.213
X-and Q-band EPR studies on the two
$Mn^{2+}$ substituted metal-binding sites of D-xylose isomerase Bogumil, R.;R. Kappl;J. Huttermann;C. Sudfeldt;H. Witzel - Enzyme Microb. Technol. v.8 Catalytic properties of D-xylose isomerase from Streptomyces violaceoruber Callens, M.;H. Kersters-Hilderson;O. van Opstal;C. K. De Bruyne
- Biochem. J. v.250 Metal ion binding to D-xylose isomerase from Streptomyces violaceoruber Callens, M.;P. Tomme;H. Kersters-Hilderson;R. Cornelis;W. Vangrysperre;C. K. De Bruyne
- Enzyme Microb. Tech. v.10 D-xylose isomerase from Streptomyces violaceoruber. Structural and catalytic roles of bivalent metal ions Callens, M.;H. Kersters-Hilderson;W. Vangrysperre;C. K. De Bruyne
- Proc. Natl. Acad. Sci. USA v.86 X-ray analysis of D-xylose isomerase at 1.9 Å: Native enzyme in complex with substrate and with a mechanism-designed inactivator Carrell, H. L.;J. P. Glusker;V. Burger;F. Manfre;D. Tritsch;J.-F. Bielmann
- Mol. Cells v.8 Lowering the pH optimum of D-xylose isomerase: Effect of mutations of the negatively charged residues Cha, J.;C. A. Batt
- J. Biol. Chem. v.269 Perturbing the metal site in D-xylose isomerase: Effect of mutations of His-220 on enzyme stability Cha, J.;Y. Cho;R. D. Whitaker;H. L. Carrell;J. P. Glusker;P. A. Karplus;C. A. Batt
- J. Mol. Biol. v.288 Crystal structures of thermostable xylose isomerases from Thermus caldophilus and Thermus thermophilus: Possible structural determinants of thermostability Chang, C.;B. C. Park;D. S. Lee;S. W. Suh
- Process Biochem. v.15 Glucose isomerase (a review) Chen, W.-P.
- J. Mol. Biol. v.212 Mechanism for aldose-ketose interconversion by D-xylose isomerase involving ring opening followed by a 1,2-hydride shift Collyer, C. A.;K. Henrick;D. M. Blow
- Agric. Biol. Chem. v.35 Studies on D-glucose-isomerizing enzyme from Bacillus coagulans strain HN-68 Danno, G.
- J. Biol. Chem. v.192 A new spectrophotometric method for the detection and determination of ketosugars and trioses Dische, Z.;E. Borenfreund
- Biochemistry v.28 Crystallographic studies of the mechanism of xylose isomerase Farber, G. K.;A. Glasfield;G. Tiraby;D. Ringe;G. A. Petsko
- Enzyme Microb. Tech. v.14 D-glucose/xylose isomerase from Streptomyces: Differential roles of magnesium and cobalt ions Gaikwad, S. M.;M. B. Rao;V. V. Deshpande
- J. Mol. Biol. v.208 Structure of D-xylose isomerase from Arthrobacter strain B3728 containing the inhibitors xylitol and D-sorbitol at 2.5 Å and 2.3 Å resolution, respectively Henrick, K.;C. A. Collyer;D. M. Blow
- Biochemistry v.31 Protein engineering of xylose (glucose) isomerase from Actinoplanes missouriensis. 1. Crystallography and site-directed mutagenesis of metal binding site Jenkins, J.;J. Janin;F. Rey;M. Chiadmi;H. van Tilbeurgh;H. Lasters;M. de Maeyer;D. Van Belle;S. Wodak;M. Lauwereys;P. Stanssens;N. T. Mrabet;J. Snauwaert;G. Matthyssens;A.-M. Lambeir
- Agric. Biol. Chem. v.46 Role of cobalt in stabilizing the molecular structure of glucose isomerase from Streptomyces griseofuscus S-41 Kasumi, T.;K. Hayashi;N. Tsumura
- Biochem. J. v.273 Purification and characterization of thermostable glucose isomerase from Clostridium thermosulfurogenes and Thermoanaerobacter strain B6A Lee, C.;J. G. Zeikus
- Biochem. J. v.285 Stability of Arthrobacter D-xylose isomerase to denaturants and heat Rangarajan, M.;B. Asboth;B. S. Hartley
- Proteins v.4 Structural analysis of the 2.8 Å model of xylose isomerase from Actinoplanes missouriensis Rey, F.;J. Jenkins;J. Janin;I. Lasters;P. Alard;M. Classsens;G. Matthyssens;S. Wodak
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Biochem. J.
v.286
Binding characteristics of
$Mn^{2+}$ ,$Co^{2+}$ , and$Mg^{2+}$ ions with several D-xylose isomerases Van Bastelaere P. B. M.;M. Callens;W. A. E. Vangrysperre;H. L. M. Kersters-Hilderson - Biochem. J. v.307 Wild-type and mutant D-xylose isomerase from Actinoplanes missouriensis: Metal ion dissociation contants, kinetic parameters of deuterated and non-deuterated substrates and solvent-isotope effects Van Bastelaere, P. B. M.;H. L. M. Kersters-Hilderson;A.-M. Lambeir
- Biochemistry v.31 Protein engineering of xylose (glucose) isomerase from Actinoplanes missouriensis. 3. Changing metal specificity and the pH profile by site-directed mutagenesis Van Tilbeurgh, H.;J. Jenkins;M. Chiadmi;J. Janin;S. J. Wodak;N. T. Mrabet;A.-M. Lambeir
- Gene v.65 A simple and rapid method for the selection of oligodeoxynucleotide-directed mutants Vandeyar, M. A.;M. P. Weiner;C. J. Hutton;C. A. Batt
- J. Biol. Chem. v.270 Probing the roles of active site residues in D-xylose isomerase Whitaker, R. D.;Y. Cho;J. Cha;H. L. Carrell;J. P. Glusker;P. A. Karplus;C. A. Batt
- Proteins v.9 A metal-mediated hydride shift mechanism for xylose isomerase based on the 1.6 Å Streptomyces rubiginosus structures with xylitol and D-xylose Whitlow, M.;A. J. Howard;B. C. Finzel;T. L. Poulos;E. Winbourne;G. L. Gilliland
- Biochim. Biophys. Acta v.151 Purification, crystallization and properties of the D-xylose isomerase from the Lactobacillus brevis Yamanaka, K.