The development of constrained peptides for inhibition of protein–protein interactions is an emerging strategy in chemical biology and drug discovery. This manuscript introduces a versatile, rapid and reversible approach to constrain peptides in a bioactive helical conformation using BID and RNase S peptides as models. Dibromomaleimide is used to constrain BID and RNase S peptide sequence variants bearing cysteine (Cys) or homocysteine (hCys) amino acids spaced at i and i + 4 positions by double substitution. The constraint can be readily removed by displacement of the maleimide using excess thiol. This new constraining methodology results in enhanced α-helical conformation (BID and RNase S peptide) as demonstrated by circular dichroism and...
Bromopyridazinedione-mediated bioconjugation to a cysteine containing protein and a disulfide contai...
Intracellular protein-protein interactions (PPI’s) play a vital role in many biological processes. ...
Alpha helices form a critical part of the binding interface for many protein-protein interactions, a...
Methods to constrain peptides in a bioactive α‐helical conformation for inhibition of protein‐protei...
The development of constrained peptides represents an emerging strategy to generate peptide based pr...
Protein–protein interactions (PPIs) control virtually all cellular processes and have thus emerged a...
In recent years, peptides have emerged as potential therapeutic tools for the disruption of protein-...
Intracellular regulatory pathways are replete with protein-protein and protein-DNA interactions, off...
Alkenylglycine amino acids were assessed as potential candidates for hydrocarbon stapling and shown ...
Proteins typically adopt defined structural conformations when interacting with other biomolecules. ...
The targeting of protein–protein interactions (PPIs) that include secondary structure motifs such as...
Phage display-selected bicyclic peptides have already shown their great potential for the developmen...
Aberrant protein-protein interactions often result in disease, and as such, effective protein-protei...
In medicinal chemistry and chemical biology, researchers are constantly expanding the chemical space...
The chemical constraint of proteins has been demonstrated to improve the binding affinity of peptide...
Bromopyridazinedione-mediated bioconjugation to a cysteine containing protein and a disulfide contai...
Intracellular protein-protein interactions (PPI’s) play a vital role in many biological processes. ...
Alpha helices form a critical part of the binding interface for many protein-protein interactions, a...
Methods to constrain peptides in a bioactive α‐helical conformation for inhibition of protein‐protei...
The development of constrained peptides represents an emerging strategy to generate peptide based pr...
Protein–protein interactions (PPIs) control virtually all cellular processes and have thus emerged a...
In recent years, peptides have emerged as potential therapeutic tools for the disruption of protein-...
Intracellular regulatory pathways are replete with protein-protein and protein-DNA interactions, off...
Alkenylglycine amino acids were assessed as potential candidates for hydrocarbon stapling and shown ...
Proteins typically adopt defined structural conformations when interacting with other biomolecules. ...
The targeting of protein–protein interactions (PPIs) that include secondary structure motifs such as...
Phage display-selected bicyclic peptides have already shown their great potential for the developmen...
Aberrant protein-protein interactions often result in disease, and as such, effective protein-protei...
In medicinal chemistry and chemical biology, researchers are constantly expanding the chemical space...
The chemical constraint of proteins has been demonstrated to improve the binding affinity of peptide...
Bromopyridazinedione-mediated bioconjugation to a cysteine containing protein and a disulfide contai...
Intracellular protein-protein interactions (PPI’s) play a vital role in many biological processes. ...
Alpha helices form a critical part of the binding interface for many protein-protein interactions, a...