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Crystal Structure Analysis of Enolase Mg Subunit Complex at pH 8.0[LYASE]
View in iCn3D Similar StructuresPubMedProteinsConserved DomainsPubChem Compound
Engineering the enolase active site pocket: Crystal structure of the D321A mutant of yeast enolase 1[LYASE]
Engineering the enolase active site pocket: Crystal structure of the S39A D321A mutant of yeast enolase 1[LYASE]
Engineering the enolase active site pocket: Crystal structure of the S39N D321A mutant of yeast enolase 1[LYASE]
Engineering the enolase active site pocket: Crystal structure of the S39N D321R mutant of yeast enolase 1[LYASE]
Engineering the enolase active site pocket: Crystal structure of the S39N Q167K D321R mutant of yeast enolase 1[LYASE]
MECHANISM OF ENOLASE: THE CRYSTAL STRUCTURE OF ENOLASE-MG2+-PHOSPHOGLYCERATE(SLASH) PHOSPHOENOLPYRUVATE COMPLEX AT 2.2-ANGSTROMS RESOLUTION[CARBON-OXYGEN LYASE]
INHIBITION OF ENOLASE: THE CRYSTAL STRUCTURES OF ENOLASE-CA2+-PHOSPHOGLYCERATE AND ENOLASE-ZN2+-PHOSPHOGLYCOLATE COMPLEXES AT 2.2-ANGSTROMS RESOLUTION[CARBON-OXYGEN LYASE]
CRYSTAL STRUCTURE OF HOLOENZYME REFINED AT 1.9 ANGSTROMS RESOLUTION: TRIGONAL-BIPYRAMIDAL GEOMETRY OF THE CATION BINDING SITE[CARBON-OXYGEN LYASE]
View in iCn3D Similar StructuresProteinsConserved DomainsPubChem Compound
REFINED STRUCTURE OF YEAST APO-ENOLASE AT 2.25 ANGSTROMS RESOLUTION[CARBON-OXYGEN LYASE]
FLUORIDE INHIBITION OF YEAST ENOLASE: CRYSTAL STRUCTURE OF THE ENOLASE-MG2+-F--PI COMPLEX AT 2.6-ANGSTROMS RESOLUTION[CARBON-OXYGEN LYASE]
CATALYTIC METAL ION BINDING IN ENOLASE: THE CRYSTAL STRUCTURE OF ENOLASE-MN2+-PHOSPHONOACETOHYDROXAMATE COMPLEX AT 2.4 ANGSTROMS RESOLUTION[CARBON-OXYGEN LYASE]
ASYMMETRIC YEAST ENOLASE DIMER COMPLEXED WITH RESOLVED 2'-PHOSPHOGLYCERATE AND PHOSPHOENOLPYRUVATE[LYASE]
YEAST ENOLASE COMPLEXED WITH AN EQUILIBRIUM MIXTURE OF 2'-PHOSPHOGLYCEATE AND PHOSPHOENOLPYRUVATE[LYASE]
CHELATION OF SER 39 TO MG2+ LATCHES A GATE AT THE ACTIVE SITE OF ENOLASE: STRUCTURE OF THE BIS(MG2+) COMPLEX OF YEAST ENOLASE AND THE INTERMEDIATE ANALOG PHOSPHONOACETOHYDROXAMATE AT 2.1 ANGSTROMS RES...
OCTAHEDRAL COORDINATION AT THE HIGH AFFINITY METAL SITE IN ENOLASE; CRYSTALLOGRAPHIC ANALYSIS OF THE MG++-ENZYME FROM YEAST AT 1.9 ANGSTROMS RESOLUTION[CARBON-OXYGEN LYASE]
REVERSE PROTONATION IS THE KEY TO GENERAL ACID-BASE CATALYSIS IN ENOLASE[LYASE]
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