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5ICJ image
Crystal Structure Of The Mycobacterium Tuberculosis Transcriptional Repressor Ethr2 In Complex With Bdm41420

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Iodinated Form Of The Mycobacterium Tuberculosis Repressor Ethr2

5N1I image
Unliganded Form Of The Mycobacterium Tuberculosis Repressor Ethr2

4M3B image
Rapid And Efficient Design Of New Inhibitors Of Mycobacterium Tuberculosis Transcriptional Repressor Ethr Using Fragment Growing, Merging And Linking Approaches

4M3D image
Rapid And Efficient Design Of New Inhibitors Of Mycobacterium Tuberculosis Transcriptional Repressor Ethr Using Fragment Growing, Merging And Linking Approaches

4M3E image
Rapid And Efficient Design Of New Inhibitors Of Mycobacterium Tuberculosis Transcriptional Repressor Ethr Using Fragment Growing, Merging And Linking Approaches

4M3F image
Rapid And Efficient Design Of New Inhibitors Of Mycobacterium Tuberculosis Transcriptional Repressor Ethr Using Fragment Growing, Merging And Linking Approaches

4M3G image
Rapid And Efficient Design Of New Inhibitors Of Mycobacterium Tuberculosis Transcriptional Repressor Ethr Using Fragment Growing, Merging And Linking Approaches

3QPL image
G106W Mutant Of Ethr From Mycobacterium Tuberculosis

3Q0W image
Ethr From Mycobacterium Tuberculosis In Complex With Compound Bdm33066

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Structural Activation Of The Transcriptional Repressor Ethr From M. Tuberculosis By Single Amino-Acid Change Mimicking Natural And Synthetic Ligands

3TP3 image
Structure Of Hth-Type Transcriptional Regulator Ethr, G106W Mutant

3SDG image
Ethionamide Boosters Part 2: Combining Bioisosteric Replacement And Structure-Based Drug Design To Solve Pharmacokinetic Issues In A Series Of Potent 1,2,4-Oxadiazole Ethr Inhibitors.

3SFI image
Ethionamide Boosters Part 2: Combining Bioisosteric Replacement And Structure-Based Drug Design To Solve Pharmacokinetic Issues In A Series Of Potent 1,2,4-Oxadiazole Ethr Inhibitors.
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