Methods to constrain peptides in a bioactive α‐helical conformation for inhibition of protein‐protein interactions represent an ongoing area of investigation in chemical biology. Recently, the first example of a reversible “stapling” methodology was described which exploits native cysteine or homocysteine residues spaced at the i and i + 4 positions in a peptide sequence together with the thiol selective reactivity of dibromomaleimides (a previous study). This manuscript reports on the optimization of the maleimide based constraint, focusing on the kinetics of macrocyclization and the extent to which helicity is promoted with different thiol containing amino acids. The study identified an optimal stapling combination of X1 = L‐Cys and X5 = ...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemistry, 2018.Cataloged from ...
The maleimide motif is widely used for the selective chemical modification of cysteine residues in p...
Recent approaches to constraining peptide sequences into more structurally-defined α- helical secon...
The development of constrained peptides for inhibition of protein–protein interactions is an emergin...
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. ...
The development of peptide stapling techniques to stabilise alpha-helical secondary structure motifs...
Protein–protein interactions (PPIs) control virtually all cellular processes and have thus emerged a...
A growing number of approaches to 'staple' α-helical peptides into a bioactive conformation using cy...
Proteins typically adopt defined structural conformations when interacting with other biomolecules. ...
Alkenylglycine amino acids were assessed as potential candidates for hydrocarbon stapling and shown ...
Controlling maleimide hydrolysis allows the modular construction of bromomaleimide-mediated bioconju...
The development of constrained peptides represents an emerging strategy to generate peptide based pr...
The application of chemical methods to biological systems has led to great advances in all life scie...
The application of chemical methods to biological systems has led to great advances in all life scie...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemistry, 2018.Cataloged from ...
The maleimide motif is widely used for the selective chemical modification of cysteine residues in p...
Recent approaches to constraining peptide sequences into more structurally-defined α- helical secon...
The development of constrained peptides for inhibition of protein–protein interactions is an emergin...
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. ...
The development of peptide stapling techniques to stabilise alpha-helical secondary structure motifs...
Protein–protein interactions (PPIs) control virtually all cellular processes and have thus emerged a...
A growing number of approaches to 'staple' α-helical peptides into a bioactive conformation using cy...
Proteins typically adopt defined structural conformations when interacting with other biomolecules. ...
Alkenylglycine amino acids were assessed as potential candidates for hydrocarbon stapling and shown ...
Controlling maleimide hydrolysis allows the modular construction of bromomaleimide-mediated bioconju...
The development of constrained peptides represents an emerging strategy to generate peptide based pr...
The application of chemical methods to biological systems has led to great advances in all life scie...
The application of chemical methods to biological systems has led to great advances in all life scie...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemistry, 2018.Cataloged from ...
The maleimide motif is widely used for the selective chemical modification of cysteine residues in p...
Recent approaches to constraining peptide sequences into more structurally-defined α- helical secon...