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Slow, tight-binding inhibition of PDF by actinonin induces

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Slow, tight-binding inhibition of PDF by actinonin induces
Inhibition and enzymatic reactions progress through an induced fit

Inhibition and enzymatic reactions progress through an induced fit

PDF) Trapping Conformational States Along Ligand-Binding Dynamics of  Peptide Deformylase: The Impact of Induced Fit on Enzyme Catalysis

PDF) Trapping Conformational States Along Ligand-Binding Dynamics of Peptide Deformylase: The Impact of Induced Fit on Enzyme Catalysis

A [(32)P]NAD(+)-based method to identify and quantitate long residence time  enoyl-acyl carrier protein reductase inhibitors. - Abstract - Europe PMC

A [(32)P]NAD(+)-based method to identify and quantitate long residence time enoyl-acyl carrier protein reductase inhibitors. - Abstract - Europe PMC

Molecules, Free Full-Text

Molecules, Free Full-Text

Slow, tight-binding inhibition of PDF by actinonin induces

Slow, tight-binding inhibition of PDF by actinonin induces

3D comparison of the binding between various PDFIs and actinonin.: (a)

3D comparison of the binding between various PDFIs and actinonin.: (a)

Antibiotics, Free Full-Text

Antibiotics, Free Full-Text

Michel Desmadril's research works  Université Paris-Saclay, Paris and  other places

Michel Desmadril's research works Université Paris-Saclay, Paris and other places

Marine Drugs, Free Full-Text

Marine Drugs, Free Full-Text

6: Slow Binding Inhibitors

6: Slow Binding Inhibitors

6: Slow Binding Inhibitors

6: Slow Binding Inhibitors

Carmela GIGLIONE, Laboratory Head, PhD, Université Paris-Saclay, Paris

Carmela GIGLIONE, Laboratory Head, PhD, Université Paris-Saclay, Paris

Isabelle ARTAUD, Research Director, PhD, French National Centre for  Scientific Research, Paris, CNRS, Chemistry and Biology Interdisciplinar  Centre paris Descartes University france

Isabelle ARTAUD, Research Director, PhD, French National Centre for Scientific Research, Paris, CNRS, Chemistry and Biology Interdisciplinar Centre paris Descartes University france

A unique peptide deformylase platform to rationally design and challenge  novel active compounds

A unique peptide deformylase platform to rationally design and challenge novel active compounds

Sonia Fieulaine's research works  Université Paris-Saclay, Paris and other  places

Sonia Fieulaine's research works Université Paris-Saclay, Paris and other places