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Search Count: 20

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2GC0 image
The Crystal Structure Of Phosphoglucose Isomerase From Pyrococcus Furiosus In Complex With 5-Phospho-D-Arabinonohydroxamate And Zinc

2GC1 image
The Crystal Structure Of Phosphoglucose Isomerase From Pyrococcus Furiosus In Complex With Sorbitol 6-Phosphate And Zinc

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The Crystal Structure Of Phosphoglucose Isomerase From Pyrococcus Furiosus In Complex With Fructose 6-Phosphate And Zinc

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The Crystal Structure Of Phosphoglucose Isomerase From Pyrococcus Furiosus In Complex With Mannose 6-Phosphate And Zinc

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The Crystal Structure Of Pyrococcus Furiosus Phosphoglucose Isomerase With Bound 5-Phospho-D-Arabinonate And Manganese

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Crystal Structure Of Phosphoglucose Isomerase From Pyrococcus Furiosus With Bound 5-Phospho-D-Arabinonate

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Crystal Structure Of Pyrococcus Furiosus Phosphoglucose Isomerase Free Enzyme

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The Structure Of The Complex Of The Fab Fragment Of The Esterolytic Antibody Ms6-164 And A Transition-State Analog

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Crystal Structure Of The Fab Fragment Of Esterolytic Antibody Ms5-393

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Crystal Structure Of The Complex Of The Fab Fragment Of Esterolytic Antibody Ms5-393 And A Transition-State Analog

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High Resolution Crystal Structure Of The Fab Fragment Of The Esterolytic Antibody Ms6-126

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High Resolution Crystal Structure Of The Complex Of The Fab Fragment Of Esterolytic Antibody Ms6-12 And A Transition-State Analog

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1.22 Angstrom Resolution Crystal Structure Of The Fab Fragment Of Esterolytic Antibody Ms6-12

1MR7 image
Crystal Structure Of Streptogramin A Acetyltransferase

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Crystal Structure Of Streptogramin A Acetyltransferase With Acetyl-Coa Bound

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Crystal Structure Of Streptogramin A Acetyltransferase With Dalfopristin

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Quadruple Mutant Q92C, N146F, Y168F, I172V Type Iii Cat Complexed With Fusidic Acid. Crystals Grown At Ph 6.3. X-Ray Data Collected At Room Temperature

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Replacement Of Catalytic Histidine-195 Of Chloramphenicol Acetyltransferase: Evidence For A General Base Role For Glutamate

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Alternative Binding Modes For Chloramphenicol And 1-Substituted Chloramphenicol Analogues Revealed By Site-Directed Mutagenesis And X-Ray Crystallography Of Chloramphenicol Acetyltransferase

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Evidence For Transition-State Stabilization By Serine-148 In The Catalytic Mechanism Of Chloramphenicol Acetyltransferase
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