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Molecules | Free Full-Text | N-Pyrazinoyl Substituted Amino Acids as Potential Antimycobacterial Agents—the Synthesis and Biological Evaluation of Enantiomers
Molecules | Free Full-Text | N-Pyrazinoyl Substituted Amino Acids as Potential Antimycobacterial Agents—the Synthesis and Biological Evaluation of Enantiomers
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Frontiers | Unnatural Amino Acid: 4-Aminopyrazolonyl Amino Acid Comprising Tri-Peptides Forms Organogel With Co-Solvent (EtOAc:Hexane)
SARS-CoV-2 Main Protease: A Molecular Dynamics Study | Journal of Chemical Information and Modeling
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PDF] Prediction of Mycobacterium tuberculosis pyrazinamidase function based on structural stability, physicochemical and geometrical descriptors | Semantic Scholar
Frontiers | Unnatural Amino Acid: 4-Aminopyrazolonyl Amino Acid Comprising Tri-Peptides Forms Organogel With Co-Solvent (EtOAc:Hexane)
Molecules | Free Full-Text | N-Pyrazinoyl Substituted Amino Acids as Potential Antimycobacterial Agents—the Synthesis and Biological Evaluation of Enantiomers
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SARS-CoV-2 Main Protease: A Molecular Dynamics Study | Journal of Chemical Information and Modeling
Prediction of Mycobacterium tuberculosis pyrazinamidase function based on structural stability, physicochemical and geometrical descriptors | PLOS ONE
SARS-CoV-2 Main Protease: A Molecular Dynamics Study | Journal of Chemical Information and Modeling
His Tag Monoclonal Antibody (6G2A9) (A00186-100)
Pyrazinamide Susceptibility Is Driven by Activation of the SigE-Dependent Cell Envelope Stress Response in Mycobacterium tuberculosis | mBio