Large and flexible ligands gain increasing interest in the development of bioactive agents. They challenge the applicability of computational ligand optimization strategies originally developed for small molecules. Free energy perturbation (FEP) is often used for predicting binding affinities of small molecule ligands, however, its use for more complex ligands remains limited. Herein, we report the structure-based design of peptide macrocycles targeting the protein binding site of human adaptor protein 14-3-3. We observe a surprisingly strong dependency of binding affinities on relatively small variations in substituent size. FEP was performed to rationalize observed trends. To account for insufficient convergence of FEP, restrained calcula...
Many biologically important ligands of proteins are large, flexible, and in many cases charged molec...
Many biologically important ligands of proteins are large, flexible, and in many cases charged molec...
Many biologically important ligands of proteins are large, flexible, and in many cases charged molec...
Constraining a peptide in its bioactive conformation by macrocyclization represents a powerful strat...
Constraining a peptide in its bioactive conformation by macrocyclization represents a powerful strat...
Constraining a peptide in its bioactive conformation by macrocyclization represents a powerful strat...
Constraining a peptide in its bioactive conformation by macrocyclization represents a powerful strat...
Macrocycles have been emerging as a very important drug class in the past few decades largely due to...
Free energy calculations are used to study how strongly potential drug molecules interact with their...
Free energy calculations are used to study how strongly potential drug molecules interact with their...
Free energy calculations are used to study how strongly potential drug molecules interact with their...
Designing tight-binding ligands is a primary objective of small-molecule drug discovery. Over the pa...
The intrinsic dynamics of macromolecules is an essential property to relate the structure of biomole...
Understanding binding mechanisms between enzymes and potential inhibitors and quantifying protein–li...
Custom-designed ligand-binding proteins represent a promising class of macromolecules with exciting ...
Many biologically important ligands of proteins are large, flexible, and in many cases charged molec...
Many biologically important ligands of proteins are large, flexible, and in many cases charged molec...
Many biologically important ligands of proteins are large, flexible, and in many cases charged molec...
Constraining a peptide in its bioactive conformation by macrocyclization represents a powerful strat...
Constraining a peptide in its bioactive conformation by macrocyclization represents a powerful strat...
Constraining a peptide in its bioactive conformation by macrocyclization represents a powerful strat...
Constraining a peptide in its bioactive conformation by macrocyclization represents a powerful strat...
Macrocycles have been emerging as a very important drug class in the past few decades largely due to...
Free energy calculations are used to study how strongly potential drug molecules interact with their...
Free energy calculations are used to study how strongly potential drug molecules interact with their...
Free energy calculations are used to study how strongly potential drug molecules interact with their...
Designing tight-binding ligands is a primary objective of small-molecule drug discovery. Over the pa...
The intrinsic dynamics of macromolecules is an essential property to relate the structure of biomole...
Understanding binding mechanisms between enzymes and potential inhibitors and quantifying protein–li...
Custom-designed ligand-binding proteins represent a promising class of macromolecules with exciting ...
Many biologically important ligands of proteins are large, flexible, and in many cases charged molec...
Many biologically important ligands of proteins are large, flexible, and in many cases charged molec...
Many biologically important ligands of proteins are large, flexible, and in many cases charged molec...